![]() | Citation List for gk and ok Alleles |
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Citation data is compiled from http://www.textpresso.org/celegans/. The citations database was last updated on: October 26, 2009 View all citations, or select a year: 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 Last modified October 26, 2009
1024 citations found. 1. The sarco-endoplasmic reticulum Ca2+ ATPase is required for development and muscle function in Caenorhabditis elegans . Zwaal, RR Van, Baelen K Groenen, JTM van Geel, A Rottiers, V Kaletta, T Dode, L Raeymaekers, L Wuytack, F Bogaert, T 2001 276 43557-43563 Journal of Biological Chemistry WBPaper00004979 ok190 2. 5HT, fluoxetine, imipramine and dopamine target distinct 5HT receptor signaling to modulate Caenorhabditis elegans egg-laying behavior. Dempsey, CM Mackenzie, SM Gargus, A Blanco, G Sze, JY 2005 Genetics 169:1425-1436 WBPaper00025145 PMID:15654117 ok103, ok345, ok512 3. A C. elegans orphan nuclear receptor contributes to xenobiotic resistance. Lindblom, TH Pierce, GJ Sluder, AE 2001 11 864-868 Current Biology WBPaper00004723 ok186 4. A Caenorhabditis elegans model of insulin resistance: Altered macronutrient storage and dauer formation in an OGT-1 knockout. Hanover, JA Forsythe, ME Hennessey, PT Brodigan, TM Love, DC Ashwell, G Krause, M 2005 Proc Natl Acad Sci USA 102:11266-11271 WBPaper00026663 PMID:16051707 ok430 5. A Caenorhabditis elegans Parkin mutant with altered solubility couples {alpha}-synuclein aggregation to proteotoxic stress. Springer, W Hoppe, T Schmidt, E Baumeister, R 2005 Hum Mol Genet 14:3407-3423 WBPaper00026844 PMID:16204351 ok275, ok551 6. A cathespin L protease essential for Caenorhabditis elegans embryogenesis is functionally conserved in parasitic nematodes. Britton, C Murray, L 2002 122 21-33 Molecular & Biochemical Parasitology WBPaper00005434 ok360 7. A complex containing the Sm protein CAR-1 and the RNA helicase CGH-1 is required for embryonic cytokinesis in Caenorhabditis elegans . Audhya, A Hyndman, F McLeod, IX Maddox, AS Yates, JR Desai, A Oegema, K 2005 J Cell Biol 171:267-279 WBPaper00026922 PMID:16247027 ok492, ok494, ok902 8. A component of C. elegans meiotic chromosome axes at the interface of homolog alignment, synapsis, nuclear reorganization, and recombination. Couteau, F Nebashima, K Villeneuve, A Zetka, M 2004 14 585-592 Current Biology WBPaper00006502 gk149 9. A conserved RNA-binding protein controls germline stem cells in Caenorhabditis elegans . Crittenden, SL Bernstein, DS Bachorik, JL Thompson, BE Gallegos, M Petcherski, AG Moulder, G Barstead, R Wickens, M Kimble, J 2002 417 660-663 Nature WBPaper00005265 ok224, ok91 10. A conserved RNA-protein complex component involved in physiological germline apoptosis regulation in C. elegans . Boag, PR Nakamura, A Blackwell, TK 2005 Development 132:4975-4986 WBPaper00026857 PMID:16221731 ok492 11. A genetic screen in Caenorhabditis elegans for dopamine neuron insensitivity to 6-hydroxydopamine identifies dopamine transporter mutants impacting transporter biosynthesis and trafficking. Nass, R Hahn, MK Jessen, T McDonald, PW Carvelli, L Blakely, RD 2005 J Neurochem 94:774-785 WBPaper00026637 PMID:15992384 ok157 12. A JNK/UNC-16 signaling complex regulates synaptic vesicle localization through a conventional kinesin in C. elegans Rie, Sakamoto Masato, Kawasaki Dana, Thyra Byrd Yishi, Jin Naoki, Hisamoto Kunihiro, Matsumoto 2002 17 2 32 Worm Breeder's Gazette WBPaper00015795 gk7 13. A Link between Meiotic Prophase Progression and Crossover Control. Carlton, PM Farruggio, AP Dernburg, AF 2006 PLoS Genet 2:e12 WBPaper00027086 PMID:16462941 ok79 14. A novel actin barbed-end-capping activity in EPS-8 regulates apical morphogenesis in intestinal cells of Caenorhabditis elegans . Croce, A Cassata, G Disanza, A Gagliani, MC Tacchetti, C Malabarba, MG Carlier, MF Scita, G Baumeister, R Di, Fiore PP 2004 6 1173-1179 Nat Cell Biol WBPaper00024614 ok539 15. A novel Dynein light intermediate chain colocalizes with the retrograde motor for intraflagellar transport at sites of axoneme assembly in chlamydomonas and Mammalian cells. Perrone, CA Tritschler, D Taulman, P Bower, R Yoder, BK Porter, ME 2003 14 2041-2056 Mol Biol Cell WBPaper00013283 ok279 16. A regulatory network of T-box genes and the even-skipped homologue vab-7 controls patterning and morphogenesis in C. elegans . Pocock, R Ahringer, J Mitsch, M Maxwell, S Woollard, A 2004 131 2373-2385 Development WBPaper00024194 ok656 17. A Role for SIR-2.1 Regulation of ER Stress Response Genes in Determining C. elegans Life Span. Viswanathan, M Kim, SK Berdichevsky, A Guarente, L 2005 Dev Cell 9:605-615 WBPaper00026929 PMID:16256736 ok434 18. A role for the RNase III enzyme DCR-1 in RNA interference and germ line development in Caenorhabditis elegans . Knight, SW Bass, BL 2001 293 2269-2271 Science WBPaper00004870 ok247 19. A systematic RNAi screen for longevity genes in C. elegans . Hamilton, B Dong, Y Shindo, M Liu, W Odell, I Ruvkun, G Lee, SS 2005 Genes Dev 19:1544-1555 WBPaper00026643 PMID:15998808 ok434 20. A Toll-interleukin 1 repeat protein at the synapse specifies asymmetric odorant receptor expression via ASK1 MAPKKK signaling. Chuang, CF Bargmann, CI 2005 Genes Dev 19:270-281 WBPaper00024676 PMID:15625192 gk264 21. ACR-16 encodes an essential subunit of the levamisole-resistant nicotinic receptor at the C. elegans neuromuscular junction. Touroutine, DV Fox, RM Von Stetina, SE Burdina, AO Miller, DM 3rd Richmond, JE 2005 J Biol Chem 280:27013-27021 WBPaper00025218 PMID:15917232 ok789 22. Actin filament disassembling activity of Caenorhabditis elegans actin-interacting protein 1 (UNC-78) is dependent on filament binding by a specific ADF/cofilin isoform. Mohri, K Ono, S 2003 116 4107-4118 Journal of Cell Science WBPaper00006108 gk27 23. Activation of EGL-47, a Galphao-coupled receptor, inhibits function of hermaphrodite-specific motor neurons to regulate Caenorhabditis elegans egg-laying behavior. Moresco, JJ Koelle, MR 2004 24 8522-8530 J Neurosci WBPaper00024411 ok677 24. Age-related changes of nuclear architecture in Caenorhabditis elegans . Haithcock, E Dayani, Y Neufeld, E Zahand, AJ Feinstein, N Mattout, A Gruenbaum, Y Liu, J 2005 Proc Natl Acad Sci USA 102:16690-16695 WBPaper00026936 PMID:16269543 gk119 25. Alternative splicing of N- and C-termini of a C. elegans ClC channel alters gating and sensitivity to external Cl- and H+. Denton, J Nehrke, K Rutledge, E Morrison, R Strange, K 2004 555 97-114 Journal of Physiology WBPaper00006426 ok763 26. An abundant class of tiny RNAs with probable regulatory roles in Caenorhabditis elegans . Lau, NC Lim, LP Weinstein, EG Bartel, DP 2001 294 858-862 Science WBPaper00004927 ok247 27. An Eph receptor sperm-sensing control mechanism for oocyte meiotic maturation in Caenorhabditis elegans . Miller, MA Ruest, PJ Kosinski, M Hanks, SK Greenstein, D 2003 17 187-200 Genes & Development WBPaper00005670 ok270 28. An extensive class of small RNAs in Caenorhabditis elegans . Lee, RC Ambros, V 2001 294 862-864 Science WBPaper00004928 ok247 29. An interneuronal chemoreceptor required for olfactory imprinting in C. elegans . Remy, JJ Hobert, O 2005 Science 309:787-790 WBPaper00026662 PMID:16051801 ok630, ok899 30. An SCF-like ubiquitin ligase complex that controls presynaptic differentiation. Liao, EH Hung, W Abrams, B Zhen, M 2004 430 345-350 Nature WBPaper00013512 ok565 31. Analysis of xbx genes in C. elegans . Efimenko, E Bubb, K Mak, HY Holzman, T Leroux, MR Ruvkun, G Thomas, JH Swoboda, P 2005 Development 132:1923-1934 WBPaper00025051 PMID:15790967 ok552, ok635, ok852 32. Anaphase-promoting complex in Caenorhabditis elegans . Yeong, FM 2004 24 2215-2225 Molecular and Cellular Biology WBPaper00006435 gk2 33. Antagonistic sensory cues generate gustatory plasticity in Caenorhabditis elegans . Hukema, RK Rademakers, S Dekkers, MP Burghoorn, J Jansen, G 2006 EMBO J 25:312-22 WBPaper00027029 PMID:16407969 gk157, ok401, ok132, ok958, ok995, ok769, ok11 34. Application of machine learning and visualization of heterogeneous datasets to uncover relationships between translation and developmental state expression of C. elegans mRNAs. Trutschl, M Dinkova, TD Rhoads, RE 2005 Physiol Genomics 21:264-273 WBPaper00025144 PMID:15701728 ok320 35. Automated assays to study longevity in C. elegans . Hertweck, M Baumeister, R 2004 126 139-145 Mech Ageing Dev WBPaper00024659 ok538 36. Biogenic amine receptors in parasitic nematodes: what can be learned from Caenorhabditis elegans . Komuniecki, RW Hobson, RJ Rex, EB Hapiak, VM Komuniecki, PR 2004 137 1-11 Molecular & Biochemical Parasitology WBPaper00024420 ok345, ok512, ok103, ok398 37. Bloom syndrome ortholog HIM-6 maintains genomic stability in C. elegans . Grabowski, MM Svrzikapa, N Tissenbaum, HA 2005 Mech Ageing Dev 126:1314-1321 WBPaper00026827 PMID:16181657 ok412 38. Blueberry polyphenols increase lifespan and thermotolerance in Caenorhabditis elegans . Wilson, MA Shukitt-Hale, B Kalt, W Ingram, DK Joseph, JA Wolkow, CA 2006 Aging Cell 5:59-68 WBPaper00027061 PMID:16441844 ok434 39. BRCA1/BARD1 orthologs required for DNA repair in Caenorhabditis elegans . Boulton, SJ Martin, JS Polanowska, J Hill, DE Gartner, A Vidal, M 2004 14 33-39 Current Biology WBPaper00006342 gk138 40. C. elegans arrestin regulates neural G protein signaling and olfactory adaptation and recovery. Palmitessa, A Hess, HA Bany, IA Kim, YM Koelle, MR Benovic, JL 2005 J Biol Chem 280:24649-24662 WBPaper00025173 PMID:15878875 ok401 41. C. elegans daf-6 Encodes a Patched-Related Protein Required for Lumen Formation. Perens, EA Shaham, S 2005 Dev Cell 8:893-906 WBPaper00025237 PMID:15935778 ok193 42. C. elegans Decapping Proteins: Localization and Functional Analysis of Dcp1, Dcp2, and DcpS during Embryogenesis. Lall, S Piano, F Davis, RE 2005 Mol Biol Cell 16:5880-5890 WBPaper00026846 PMID:16207815 gk100 43. C. elegans EGL-9 and mammalian homologs define a family of dioxygenases that regulate HIF by prolyl hydroxylation. Epstein, ACR Gleadle, JM McNeill, LA Hewitson, KS O'Rourke, J Mole, DR Mukherji, M Metzen, E Wilson, MI Dhanda, A Tian, Y-M Masson, N Hamilton, DL Jaakkola, P Barstead, R Hodgkin, J Maxwell, PH Pugh, CW Schofield, CJ Ratcliffe, PJ 2001 107 43-54 Cell WBPaper00004898 ok161 44. C. elegans HIM-17 links chromatin modification and competence for initiation of meiotic recombination. Reddy, KC Villeneuve, AM 2004 118 439-452 Cell WBPaper00024355 ok424 45. C. elegans homologue of the Caf1 gene, which encodes a subunit of the CCR4-NOT complex, is essential for embryonic and larval development and for meiotic progression. Molin, L Puisieux, A 2005 Gene 358:73-81 WBPaper00026675 PMID:16039072 gk40 46. C. elegans metallothioneins: new insights into the phenotypic effects of cadmium toxicosis. Swain, SC Keusekotten, K Baumeister, R Sturzenbaum, SR 2004 341 951-959 Journal of Molecular Biology WBPaper00024351 gk125 47. C. elegans mre-11 is required for meiotic recombination and DNA repair but is dispensable for the meiotic G(2) DNA damage checkpoint. Chin, GM Villeneuve, AM 2001 15 522-534 Genes and Development WBPaper00004596 ok179 48. C. elegans ortholog of mammalian Ku70 interacts with insulin-like signaling to modulate stress resistance and life span. McColl, G Vantipalli, MC Lithgow, GJ 2005 FASEB J 19:1716-1718 WBPaper00026717 PMID:16099946 ok861 49. C. elegans PAT-4/ILK functions as an adaptor protein within integrin adhesion complexes. Mackinnon, AC Qadota, H Norman, KR Moerman, DG Williams, BD 2002 12 787-797 Current Biology WBPaper00005261 gk1 50. C. elegans PAT-6/actopaxin plays a critical role in the assembly of integrin adhesion complexes in vivo. Lin, X Qadota, H Moerman, DG Williams, BD 2003 13 922-932 Current Biology WBPaper00005915 gk1 51. C. elegans peb-1 mutants exhibit pleiotropic defects in molting, feeding, and morphology. Fernandez, AP Gibbons, J Okkema, PG 2004 276 352-366 Dev Biol WBPaper00024643 ok257 52. C. elegans SGK-1 is the critical component in the Akt/PKB kinase complex to control stress response and life span. Hertweck, M Gobel, C Baumeister, R 2004 6 577-588 Developmental Cell WBPaper00013413 ok538, ok525, ok393 53. C. elegans Slit acts in midline, dorsal-ventral, and anterior-posterior guidance via the SAX-3/Robo receptor. Hao, JC Wu, TW Fujisawa, K Culotti, JG Gengyo-Ando, K Mitani, S Moulder, G Barstead, R Tessier-Lavigne, M Bargmann, CI 2001 32 25-38 Neuron WBPaper00004900 ok255 54. C. elegans STAT Cooperates with DAF-7/TGF-beta Signaling to Repress Dauer Formation. Wang, Y Levy, DE 2006 Curr Biol 16:89-94 WBPaper00027021 PMID:16401427 ok587 55. Caenorhabditis elegans ABL-1 antagonizes p53-mediated germline apoptosis after ionizing irradiation. Deng, X Hofmann, ER Villanueva, A Hobert, O Capodieci, P Veach, DR Yin, X Campodonico, L Glekas, A Cordon-Cardo, C Clarkson, B Bornmann, WG Fuks, Z Hengartner, MO Kolesnick, R 2004 36 906-912 Nat Genet WBPaper00023910 gk7, gk138, ok171 56. Caenorhabditis elegans Ce-rdh-1/rad-51 functions after double-strand break formation of meiotic recombination. Takanami, T Mori, A Takahashi, H Horiuchi, S Higashitani, A 2003 11 125-135 Chromosome Research WBPaper00005784 ok79 57. Caenorhabditis elegans CNK-1 promotes Raf activation but is not essential for Ras/Raf signaling. Rocheleau, CE Ronnlund, A Tuck, S Sundaram, MV 2005 Proc Natl Acad Sci USA 102:11757-11762 WBPaper00026726 PMID:16085714 ok836 58. Caenorhabditis elegans EVL-14/PDS-5 and SCC-3 are essential for sister chromatid cohesion in meiosis and mitosis. Wang, F Yoder, J Antoshechkin, I Han, M 2003 23 7698-7707 Molecular and Cellular Biology WBPaper00006163 ok79 59. Caenorhabditis elegans expresses three functional profilins in a tissue-specific manner. Polet, D Lambrechts, A Ono, K Mah, A Peelman, F Vandekerckhove, J Baillie, DL Ampe, C Ono, S 2005 Cell Motil Cytoskeleton 63:14-28 WBPaper00026958 PMID:16317718 ok458 60. Caenorhabditis elegans gcs-1 Confers Resistance to Arsenic-Induced Oxidative Stress. Liao, VH Yu, CW 2005 Biometals 18:519-528 WBPaper00026968 PMID:16333752 ok436 61. Caenorhabditis elegans HUS-1 is a DNA damage checkpoint protein required for genome stability and EGL-1-mediated apoptosis. Hofmann, ER Milstein, S Boulton, SJ Ye, M Hofmann, JJ Stergiou, L Gartner, A Vidal, M Hengartner, MO 2002 12 1908-1918 Current Biology WBPaper00005597 gk138 62. Caenorhabditis elegans OSR-1 regulates behavioral and physiological responses to hyperosmotic environments. Solomon, A Bandhakavi, S Jabbar, S Shah, R Beitel, GJ Morimoto, RI 2004 167 161-170 Genetics WBPaper00013472 ok169 63. Caenorhabditis elegans pseudouridine synthase 1 activity in vivo: tRNA is a substrate, but not U2 small nuclear RNA, Patton, JR Padgett, RW 2003 372 595-602 Biochemical Journal WBPaper00005929 gk38 64. Caenorhabditis elegans syndecan (SDN-1) is required for normal egg laying and associates with the nervous system and the vulva. Minniti, AN Labarca, M Hurtado, C Brandan, E 2004 117 5179-5190 J Cell Sci WBPaper00024413 ok449, ok377 65. Caenorhabditis elegans T-box genes tbx-9 and tbx-8 are required for formation of hypodermis and body-wall muscle in embryogenesis. Andachi, Y 2004 9 331-344 Genes to Cells WBPaper00006477 ok656 66. Caenorhabditis elegans triple null mutant lacking UDP-N-acetyl-D-glucosamine: alpha-3-D-mannoside beta1,2-N-acetylglucosaminyltransferase I. Zhu, S Hanneman, A Reinhold, VN Spence, AM Schachter, H 2004 382 995-1001 Biochemical Journal WBPaper00024538 ok712 67. Calcineurin, a calcium/calmodulin-dependent protein phosphatase, is involved in movement, fertility, egg laying, and growth in Caenorhabditis elegans . Bandyopadhyay, J Lee, J Lee, JI Yu, JR Jee, C Cho, JH Jung, S Lee, MH Zannoni, S Singson, A Kim, DH Koo, HS Ahnn, J Kim, do H 2002 13 3281-3293 Molecular Biology of the Cell WBPaper00005483 ok276 68. Carboxy terminus splice variation alters ClC channel gating and extracellular cysteine reactivity. He, L Denton, J Nehrke, K Strange, K 2006 Biophys J 90:3570-81 WBPaper00027127 PMID:16500974 ok768 69. Casein Kinase II and Calcineurin Modulate TRPP Function and Ciliary Localization. Hu, J Bae, YK Knobel, KM Barr, MM 2006 Mol Biol Cell 17:2200-11 WBPaper00027106 PMID:16481400 gk389, ok1516 70. Cathepsin L protease (CPL-1) is essential for yolk processing during embryogenesis in Caenorhabditis elegans . Britton, C Murray, L 2004 117 5133-5143 J Cell Sci WBPaper00024412 ok360 71. Cell cycle control by daf-21/Hsp90 at the first meiotic prophase/metaphase boundary during oogenesis in Caenorhabditis elegans . Inoue, T Hirata, K Kuwana, Y Fujita, M Miwa, J Roy, R Yamaguchi, Y 2006 Dev Growth Differ 48:25-32 WBPaper00027088 PMID:16466390 ok79, ok978 72. Cell fates and fusion in the C. elegans vulval primordium are regulated by the EGL-18 and ELT-6 GATA factors - apparent direct targets of the LIN-39 Hox protein. Koh, K Peyrot, SM Wood, CG Wagmaister, JA Maduro, MF Eisenmann, DM Rothman, JH 2002 129 5171-5180 Development WBPaper00005609 ok290 73. Cell-type specific regulation of serotonergic identity by the C. elegans LIM-homeodomain factor LIM-4. Zheng, X Chung, S Tanabe, T Sze, JY 2005 Dev Biol 286:618-628 WBPaper00026818 PMID:16168406 ok642 74. CeVPS-27 is an Endosomal Protein Required for the Molting and the Endocytic Trafficking of the Low-Density Lipoprotein Receptor-Related Protein 1 in Caenorhabditis elegans . Roudier, N Lefebvre, C Legouis, R 2005 Traffic 6:695-705 WBPaper00026641 PMID:15998324 ok579 75. cgh-1, a conserved predicted RNA helicase required for gametogenesis and protection from physiological germline apoptosis in C. elegans . Navarro, RE Shim, EY Kohara, Y Singson, A Blackwell, TK 2001 128 3221-3232 Development WBPaper00004905 ok79 76. Characterization of kynurenine aminotransferase III, a novel member of a phylogenetically conserved KAT family. Yu, P Li, Z Zhang, L Tagle, DA Cai, T 2005 Gene 365:111-118 WBPaper00027001 PMID:16376499 ok566 77. Chemical structure and biological activity of the Caenorhabditis elegans dauer-inducing pheromone. Jeong, PY Jung, M Yim, YH Kim, H Park, M Hong, E Lee, W Kim, YH Kim, K Paik, YK 2005 Nature 433:541-545 WBPaper00024930 PMID:15690045 ok480 78. Chromatin and RNAi factors protect the C. elegans germline against repetitive sequences. Robert, VJP Sijen, T van, Wolfswinkel J Plasterk, RHA 2005 Genes Dev 19:782-787 WBPaper00025139 PMID:15774721 ok1061 79. Chromatin regulation and sumoylation in the inhibition of Ras-induced vulval development in Caenorhabditis elegans . Poulin, G Dong, Y Fraser, AG Hopper, NA Ahringer, J 2005 EMBO J 24:2613-2623 WBPaper00026636 PMID:15990876 ok359 80. Chromosome-Wide Regulation of Meiotic Crossover Formation in Caenorhabditis elegans Requires Properly Assembled Chromosome Axes. Nabeshima, K Villeneuve, AM Hillers, KJ 2004 168 1275-1292 Genetics WBPaper00024638 gk149 81. Clathrin Interaction and Subcellular Localization of Ce-DAB-1, an Adaptor for Protein Secretion in Caenorhabditis elegans . Kamikura, DM Cooper, JA 2006 Traffic 7:324-336 WBPaper00027122 PMID:16502424 gk291 82. Combinatorial expression of TRPV channel proteins defines their sensory functions and subcellular localization in C. elegans neurons. Tobin, DM Madsen, DM Kahn-Kirby, A Peckol, EL Moulder, G Barstead, R Maricq, AV Bargmann, CI 2002 35 307-318 Neuron WBPaper00005350 ok132 83. Compensatory regulation among ER chaperones in C. elegans . Kapulkin, V Hiester, BG Link, CD 2005 FEBS Lett 579:3063-3068 WBPaper00025202 PMID:15907843 ok1083 84. Complementary signaling pathways regulate the unfolded protein response and are required for C. elegans development. Shen, X Ellis, RE Lee, K Liu, CY Yang, K Solomon, A Yoshida, H Morimoto, R Kurnit, DM Mori, K Kaufman, RJ 2001 107 893-903 Cell WBPaper00005044 ok275 85. Condensin restructures chromosomes in preparation for meiotic divisions. Chan, RC Severson, AF Meyer, BJ 2004 167 613-625 J Cell Biol WBPaper00024612 ok79 86. Conditional Dominant Mutations in the C. elegans Gene act-2 Identify Cytoplasmic and Muscle Roles for a Redundant Actin Isoform. Willis, JH Munro, E Lyczak, R Bowerman, B 2006 Mol Biol Cell 17:1051-64 WBPaper00027028 PMID:16407404 ok1229 87. Control of the proliferation versus meiotic development decision in the C. elegans germline through regulation of GLD-1 protein accumulation. Hansen, D Wilson-Berry, L Dang, T Schedl, T 2004 131 93-104 Development WBPaper00006369 ok91 88. Convergent, RIC-8-dependent G alpha signaling pathways in the C. elegans synaptic signaling network. Reynolds, NK Schade, MA Miller, KG 2005 Genetics 169:650-670 WBPaper00024986 PMID:15489511 ok98 89. Cooperative regulation of AJM-1 controls junctional integrity in Caenorhabditis elegans epithelia. Koppen, M Simske, JS Sims, PA Firestein, BL Hall, DH Radice, AD Rongo, C Hardin, JD 2001 3 983-991 Nature Cell Biology WBPaper00004961 ok160 90. Crossing over is coupled to late meiotic prophase bivalent differentiation through asymmetric disassembly of the SC. Nabeshima, K Villeneuve, AM Colaiacovo, MP 2005 J Cell Biol 168:683-689 WBPaper00024982 PMID:15738262 ok79 91. CYP35: Xenobiotically induced gene expression in the nematode Caenorhabditis elegans . Menzel, R Rodel, M Kulas, J Steinberg, CE 2005 Arch Biochem Biophys 438:93-102 WBPaper00025207 PMID:15910738 gk317, ok1393 92. Dedifferentiation of primary spermatocytes into germ cell tumors in C. elegans lacking the Pumilio-like protein Subramaniam, K Seydoux, G 2003 13 134-139 Current Biology WBPaper00005710 ok302 93. Deficiency of Bloom`s Syndrome Protein Causes Hypersensitivity of C. elegans to Ionizing Radiation but Not to UV Radiation, and Induces p53-dependent Physiological Apoptosis. Kim, YM Yang, I Lee, J Koo, HS 2005 Mol Cells 20:228-234 WBPaper00026934 PMID:16267397 ok412 94. Deletion of the Caenorhabditis elegans homologues of the CLN3 gene, involved in human juvenile neuronal ceroid lipofuscinosis, causes a mild progeric phenotype. de Voer, G der Bent, P Rodrigues, AJ van Ommen, GJ Peters, DJ Taschner, PE 2005 J Inherit Metab Dis 28:1065-1080 WBPaper00027030 PMID:16435200 gk41, gk118 95. Differential regulation of TRPM channels governs electrolyte homeostasis in the C. elegans intestine. Teramoto, T Lambie, EJ Iwasaki, K 2005 Cell Metabolism 1:343-354 WBPaper00026597 PMID:16054081 ok365, ok375 96. Differential sulfations and epimerization define heparan sulfate specificity in nervous system development. Bulow, HE Hobert, O 2004 41 723-736 Neuron WBPaper00006471 ok595, ok273 97. Direct regulation of egl-1 and of programmed cell death by the Hox protein MAB-5 and by CEH-20, a C. elegans homolog of Pbx1. Liu, H Strauss, TJ Potts, MB Cameron, S 2006 Development 133:641-650 WBPaper00027049 PMID:16421192 gk159 98. Disease-related myotubularins functions in endocytic traffic in Caenorhabditis elegans . Dang, H Li, Z Skolnik, EY Fares, H 2004 15 189-196 Molecular Biology of the Cell WBPaper00006306 ok330 99. Disruption of dog-1 in Caenorhabditis elegans triggers deletions upstream of guanine-rich DNA. Cheung, I Schertzer, M Rose, A Lansdorp, PM 2002 31 405-409 Nature Genetics WBPaper00005308 gk10 100. Distinct modes of ATR activation after replication stress and DNA double-strand breaks in Caenorhabditis elegans . Garcia-Muse, T Boulton, SJ 2005 EMBO J 24:4345-4355 WBPaper00026962 PMID:16319925 ok179 101. Distinct regulatory elements mediate similar expression patterns in Caenorhabditis elegans ` excretory cell. Zhao, Z Fang, L Chen, N Johnsen, RC Stein, L Baillie, DL 2005 J Biol Chem WBPaper00026805 PMID:16159881 gk19, gk370 102. DNA binding and in vivo function of C. elegans PEB-1 require a conserved FLYWCH motif. Beaster-Jones, L Okkema, PG 2004 339 695-706 Journal of Molecular Biology WBPaper00013471 ok257, ok369, ok370, ok423, ok424, ok425, ok450, ok391, ok392 103. Dopamine modulates the plasticity of mechanosensory responses in Caenorhabditis elegans . Sanyal, S Wintle, RF Kindt, KS Nuttley, WM Arvan, R Fitzmaurice, P Bigras, E Merz, DC Hebert, TE van, der Kooy, D Schafer, WR Culotti, JG Van, Tol HHM 2004 23 473-482 EMBO Journal WBPaper00006389 ok411 104. Dopamine transporters depolarize neurons by a channel mechanism. Carvelli, L McDonald, PW Blakely, RD DeFelice, LJ 2004 101 16046-16051 Proceedings of the National Academy of Sciences USA WBPaper00024866 ok157 105. Dose-dependent control of proliferation and sperm specification by FOG-1/CPEB. 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