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Recombinational DNA double-strand breaks in mice precede synapsis 总被引:24,自引:0,他引:24
Mahadevaiah SK Turner JM Baudat F Rogakou EP de Boer P Blanco-Rodríguez J Jasin M Keeney S Bonner WM Burgoyne PS 《Nature genetics》2001,27(3):271-276
In Saccharomyces cerevisiae, meiotic recombination is initiated by Spo11-dependent double-strand breaks (DSBs), a process that precedes homologous synapsis. Here we use an antibody specific for a phosphorylated histone (gamma-H2AX, which marks the sites of DSBs) to investigate the timing, distribution and Spo11-dependence of meiotic DSBs in the mouse. We show that, as in yeast, recombination in the mouse is initiated by Spo11-dependent DSBs that form during leptotene. Loss of gamma-H2AX staining (which in irradiated somatic cells is temporally linked with DSB repair) is temporally and spatially correlated with synapsis, even when this synapsis is 'non-homologous'. 相似文献
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975.
Boyartchuk VL Broman KW Mosher RE D'Orazio SE Starnbach MN Dietrich WF 《Nature genetics》2001,27(3):259-260
We have used a novel quantitative trait locus model to study the genetics of survival of F2 progeny of susceptible BALB/cByJ and resistant C57BL/6ByJ mice that have been infected with Listeria monocytogenes. This allowed us to map modifiers of L. monocytogenes susceptibility to chromosomes 5 and 13. 相似文献
976.
DNA double-strand breaks: signaling, repair and the cancer connection 总被引:38,自引:0,他引:38
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978.
Targeted deletion of the gene encoding iron regulatory protein-2 causes misregulation of iron metabolism and neurodegenerative disease in mice 总被引:23,自引:0,他引:23
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Joyce S 《Cellular and molecular life sciences : CMLS》2001,58(3):442-469
Cellular and humoral immune mechanisms recruited to defend the host from infectious agents depend upon the early immune events
triggered by antigen. The cytokine milieu within which the immune response matures is the most important of many factors that
govern the nature of the immune response. Natural T cells, whose function is controlled by CD1d molecules, are an early source
of cytokines that can bestow type 1 or type 2 differentiative potential upon helper T lymphocytes. This review attempts to
illuminate the glycolipid antigen presentation properties of CD1d, how CD1d controls the function of natural T cells and how
CD1d and natural T cells interact to jump start the immune system. CD1d is postulated to function as a sensor, sensing alterations
in cellular lipid content by virtue of its affinity for such ligands. The presentation of a neo-self glycolipid, presumably
by infectious assault of antigen-presenting cells, activates natural T cells, which promptly release pro-inflammatory and
anti-inflammatory cytokines and jumpstart the immune system.
Received 10 July 2000; received after revision 16 October 2000, accepted 16 November 2000 相似文献