Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Olga V. Posukh"'
Autor:
Petr P. Laktionov, Daniil A. Maksimov, Stanislav E. Romanov, Polina A. Antoshina, Olga V. Posukh, Helen White-Cooper, Dmitry E. Koryakov, Stepan N. Belyakin
Publikováno v:
Epigenetics & Chromatin, Vol 11, Iss 1, Pp 1-15 (2018)
Abstract Background During Drosophila spermatogenesis, testis-specific meiotic arrest complex (tMAC) and testis-specific TBP-associated factors (tTAF) contribute to activation of hundreds of genes required for meiosis and spermiogenesis. Intriguingly
Externí odkaz:
https://doaj.org/article/a61d4f1b9a2a4ea89a50172a339713a7
Autor:
Olga V. Posukh, Daniil A. Maksimov, Petr P. Laktionov, Dmitry E. Koryakov, Stepan N. Belyakin
Publikováno v:
Epigenetics & Chromatin, Vol 10, Iss 1, Pp 1-14 (2017)
Abstract Background In eukaryotes, heterochromatin replicates late in S phase of the cell cycle and contains specific covalent modifications of histones. SuUR mutation found in Drosophila makes heterochromatin replicate earlier than in wild type and
Externí odkaz:
https://doaj.org/article/2d5ef18fbeb9431580fc5df170917d47
Autor:
Petr P. Laktionov, Olga V. Posukh, Stepan N. Belyakin, Daniil A. Maksimov, Dmitry E. Koryakov
Publikováno v:
Chromosoma. 127:85-102
Histone modifications represent one of the key factors contributing to proper genome regulation. One of histone modifications involved in gene silencing is methylation of H3K9 residue. Present in the chromosomes across different eukaryotes, this epig
Autor:
Olga V. Posukh, Stepan N. Belyakin, Dmitry E. Koryakov, Ksenia Skvortsova, Daniil A. Maksimov
Publikováno v:
Nucleus. 6:249-253
Replication of chromosomes is central to heredity. To become available for replication machinery, DNA invariably needs to dissociate from chromatin proteins. Yet, chromatin landscape must be promptly re-established during or soon after replication. A
Autor:
Stepan N. Belyakin, Petr P. Laktionov, Stanislav E. Romanov, Polina A. Antoshina, Helen White-Cooper, Daniil A. Maksimov, Dmitry E. Koryakov, Olga V. Posukh
Publikováno v:
Epigenetics & Chromatin
Epigenetics & Chromatin, Vol 11, Iss 1, Pp 1-15 (2018)
Epigenetics & Chromatin, Vol 11, Iss 1, Pp 1-15 (2018)
Background During Drosophila spermatogenesis, testis-specific meiotic arrest complex (tMAC) and testis-specific TBP-associated factors (tTAF) contribute to activation of hundreds of genes required for meiosis and spermiogenesis. Intriguingly, tMAC is
Autor:
Xiaohan Guo, Travis J. Bernardo, Olga V. Posukh, Arthur I. Skoultchi, Alexey V. Pindyurin, Xingwu Lu, Igor F. Zhimulev, Sean E. Healton, Evgeniya N. Andreyeva, Boris Bartholdy, Michael A. Willcockson, Tatyana D. Kolesnikova, Lyubov A. Yarinich, Dmitry V. Fyodorov
Publikováno v:
Genesdevelopment. 31(6)
Eukaryotic DNA replicates asynchronously, with discrete genomic loci replicating during different stages of S phase. Drosophila larval tissues undergo endoreplication without cell division, and the latest replicating regions occasionally fail to comp
Autor:
Anton V. Ivankin, Tatyana D. Kolesnikova, Igor F. Zhimulev, Olga V. Posukh, Eugeniya N. Andreyeva, Darya S. Bebyakina
Publikováno v:
Chromosoma. 122:55-66
Drosophila SUUR (Suppressor of UnderReplication) protein was shown to regulate the DNA replication elongation process in endocycling cells. This protein is also known to be the component of silent chromatin in polyploid and diploid cells. To mark the
Autor:
Igor F. Zhimulev, Igor V. Makunin, Olga V. Posukh, A. A. Yurlova, Elena S. Belyaeva, Tatyana D. Kolesnikova
Publikováno v:
Genetics. 183:119-129
Different genomic regions replicate at a distinct time during S-phase. The SuUR mutation alters replication timing and the polytenization level of intercalary and pericentric heterochromatin in Drosophila melanogaster salivary gland polytene chromoso
Publikováno v:
Doklady Biochemistry and Biophysics. 416:274-277