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14篇 您的检索式:作者名="Strunnikov"
    题名 作者 年代 出处 被引量
1Study of hydrogen isotope interaction with beryllium and carbon surfaces under their simultaneous exposure to stationary and powerful pulsed plasma显示文摘M.I Guseva V.M Gureev L.S Danelyan B.N Kolbasov S.N Korshunov I.D Skorlupkin V.G Stolyarova V.I Vasil’ev V.M Strunnikov V.V Zatyokin V.S Kulikauskas 2004Journal of Nuclear Materials2004,,:1
2The nature of heterosis method of its enhancing and fixation in a series of generations without hybridization显示文摘Strunnikov AV Strunnikova LV 2000Biology bulletin2000,,6:1
3Sex control in silkworms显示文摘Strunnikov V A 1975Nature1975,255,:1
4Research on the artificial regulation of sex in animals in the USSR显示文摘STRUNNIKOV VA 1978Ontogenez1978,9,1:1
5Cohesin complexes with a potential to link mam- malian meiosis to cancer显示文摘Strunnikov A 2013Cell Regen (Lond)2013,2,1:1
6Saccharomyces cerevisiae SMT4 encodes an evolutionarily conserved protease with a role in chromosome condensation regulation显示文摘Strunnikov AV Aravind L Koonin EV 2001Genetics2001,158,1:1
7Sex control in silkworms显示文摘Strunnikov V 1975Nature1975,255,5504:1
8Cyto- plasmic sumoylation by PIAS-type Sizl-SUMO ligase显示文摘TAKAHASHI Y IWASE M STRUNNIKOV AV 2008Cell Cycle2008,7,12:1
9In vivo modeling of polysumoylation uncovers targeting of topoisomerase II to the nueleolus via optimal level of SUMO modification 显示文摘Takahashi Y Strunnikov A 2008Chmmnsoma2008,117,5:1
10SMC2,a saccharomyces cerevisiae gene essential for chromosome segregation and condensation,defines a subgroup within the SMC family显示文摘Strunnikov AV Hogan E Koshland D 1995Genes Dev1995,9,5:1
11Sex control in silkworms显示文摘Strunnikov V 1975Nature1975,255,5504:1
12Structural maintenance of chromosomes (SMC) proteins: conserved molecular propertiesfor multiple biological functions 显示文摘Strunnikov AV Jessberger R 1999Eur J Biochem1999,263,1:1
13SMC2, a Saccharomyces cerevisiae gene essential for chromosome segregation and condensation, defines a subgroup within the SMC family 显示文摘Strunnikov AV Hogan E Koshland D 1995Genes Dev1995,9,5:1
14Cohesin complexes with a potential to link mammalian meiosis to cancer显示文摘Among multiple genes aberrantly activated in cancers,invariably,there is a group related to the capacity of cell to self-renewal.Some of these genes are related to the normal process of development,including the establishment of a germline.This group,a part of growing family of Cancer/Testis(CT)genes,now includes the meiosis specific subunits of cohesin complex.The first reports characterizing the SMC1 and RAD21 genes,encoding subunits of cohesin,were published 20 years ago;however the exact molecular mechanics of cohesin molecular machine in vivo remains rather obscure notwithstanding ample elegant experiments.The matters are complicated by the fact that the evolution of cohesin function,which is served by just two basic types of protein complexes in budding yeast,took an explosive turn in Metazoa.The recent characterization of a new set of genes encoding cohesin subunits specific for meiosis in vertebrates adds several levels of complexity to the task of structurefunction analysis of specific cohesin pathways,even more so in relation to their aberrant functionality in cancers.These three proteins,SMC1β,RAD21L and STAG3 are likely involved in a specific function in the first meiotic prophase,genetic recombination,and segregation of homologues.However,at present,it is rather challenging to pinpoint the molecular role of these proteins,particularly in synaptonemal complex or centromere function,due to the multiplicity of different cohesins in meiosis.The roles of these proteins in cancer cell physiology,upon their aberrant activation in tumors,also remain to be elucidated.Nevertheless,as the existence of Cancer/Testis cohesin complexes in tumor cells appears to be all but certain,this brings a promise of a new target for cancer therapy and/or diagnostics.Alexander Strunnikov 2013Cell Regeneration2013,2,1:0
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