Jonathan Hodgkin
Affiliations: | Medical Research Council Laboratories, Serekunda, Banjul, The Gambia |
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Children
Sign in to add traineeMagdalena Skipper | grad student | 1994-1998 | Cambridge |
David Zarkower | post-doc | (Microtree) | |
David Pilgrim | post-doc | 1987-1991 | Medical Research Council UK (Chemistry Tree) |
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Publications
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Gravato-Nobre MJ, Stroud D, O'Rourke D, et al. (2011) Glycosylation genes expressed in seam cells determine complex surface properties and bacterial adhesion to the cuticle of Caenorhabditis elegans. Genetics. 187: 141-55 |
Nicholas HR, Hodgkin J. (2009) The C. elegans Hox gene egl-5 is required for correct development of the hermaphrodite hindgut and for the response to rectal infection by Microbacterium nematophilum. Developmental Biology. 329: 16-24 |
Yook K, Hodgkin J. (2007) Mos1 mutagenesis reveals a diversity of mechanisms affecting response of Caenorhabditis elegans to the bacterial pathogen Microbacterium nematophilum Genetics. 175: 681-697 |
Hodgkin J. (2005) Genetic suppression. Wormbook : the Online Review of C. Elegans Biology. 1-13 |
Novelli J, Ahmed S, Hodgkin J. (2004) Gene interactions in Caenorhabditis elegans define DPY-31 as a candidate procollagen C-proteinase and SQT-3/ROL-4 as its predicted major target. Genetics. 168: 1259-73 |
Hodgkin J. (2002) Exploring the envelope. Systematic alteration in the sex-determination system of the nematode caenorhabditis elegans. Genetics. 162: 767-80 |
Aronoff R, Baran R, Hodgkin J. (2001) Molecular identification of smg-4, required for mRNA surveillance in C. elegans Gene. 268: 153-164 |
Friedman L, Anna-Arriola SS, Hodgkin J, et al. (2000) gon-4, a Cell Lineage Regulator Required for Gonadogenesis in Caenorhabditis elegans Developmental Biology. 228: 350-362 |
Gartner A, Milstein S, Ahmed S, et al. (2000) A conserved checkpoint pathway mediates DNA damage--induced apoptosis and cell cycle arrest in C. elegans. Molecular Cell. 5: 435-43 |
Ahmed S, Hodgkin J. (2000) MRT-2 checkpoint protein is required for germline immortality and telomere replication in C. elegans Nature. 403: 159-164 |