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ОТСУТСТВИЕ ЦИКЛИНЗАВИСИМОЙ ФОСФОПРОТЕИНКИНАЗЫ PHO85P ПРИВОДИТ К НАРУШЕНИЮ РАСПРЕДЕЛЕНИЯ МИТОХОНДРИАЛЬНЫХ НУКЛЕОИДОВ У ДРОЖЖЕЙ SACCHAROMYCES CEREVISIAE. / Самбук, Е. В.; Физикова, А. Ю.; Захарова, К. В.; Смирнов, А. М.; Падкина, М. В.

в: Цитология, Том 47, № 10, 01.12.2005, стр. 917-924.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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@article{16e3e11074ef40369fbc6f684d9dc59b,
title = "ОТСУТСТВИЕ ЦИКЛИНЗАВИСИМОЙ ФОСФОПРОТЕИНКИНАЗЫ PHO85P ПРИВОДИТ К НАРУШЕНИЮ РАСПРЕДЕЛЕНИЯ МИТОХОНДРИАЛЬНЫХ НУКЛЕОИДОВ У ДРОЖЖЕЙ SACCHAROMYCES CEREVISIAE",
abstract = "Cyclin-dependent phosphoprotein kinases (CDK) play essential role in the regulation of the progression through different phases of the cell cycle, being also involved in metabolic regulation and in actin cytoskeleton organization. The Saccharomyces cerevisiae CDK Pho85p is associated with 10 different cyclins and phosphorylates different substrates, among these transcription factors Pho4p and Gcn4p, and a protein involved in actin polymerization being a homologue of amphiphysin 1 of mammalian Rvs167p. It is known that mutations in the PHO85 gene have a multiple pleotropic effects, one of these effects being a rapid accumulation of mitochondrial [rho-] mutations observed on the background of gene PHO85 inactivation. In this study it was shown that the appearance of [rho-] clones is a result of some defects in mitochondrial nucleoid transmission from mother to bud cells.",
author = "Самбук, {Е. В.} and Физикова, {А. Ю.} and Захарова, {К. В.} and Смирнов, {А. М.} and Падкина, {М. В.}",
year = "2005",
month = dec,
day = "1",
language = "русский",
volume = "47",
pages = "917--924",
journal = "Цитология",
issn = "0041-3771",
publisher = "МАИК {"}Наука/Интерпериодика{"}",
number = "10",

}

RIS

TY - JOUR

T1 - ОТСУТСТВИЕ ЦИКЛИНЗАВИСИМОЙ ФОСФОПРОТЕИНКИНАЗЫ PHO85P ПРИВОДИТ К НАРУШЕНИЮ РАСПРЕДЕЛЕНИЯ МИТОХОНДРИАЛЬНЫХ НУКЛЕОИДОВ У ДРОЖЖЕЙ SACCHAROMYCES CEREVISIAE

AU - Самбук, Е. В.

AU - Физикова, А. Ю.

AU - Захарова, К. В.

AU - Смирнов, А. М.

AU - Падкина, М. В.

PY - 2005/12/1

Y1 - 2005/12/1

N2 - Cyclin-dependent phosphoprotein kinases (CDK) play essential role in the regulation of the progression through different phases of the cell cycle, being also involved in metabolic regulation and in actin cytoskeleton organization. The Saccharomyces cerevisiae CDK Pho85p is associated with 10 different cyclins and phosphorylates different substrates, among these transcription factors Pho4p and Gcn4p, and a protein involved in actin polymerization being a homologue of amphiphysin 1 of mammalian Rvs167p. It is known that mutations in the PHO85 gene have a multiple pleotropic effects, one of these effects being a rapid accumulation of mitochondrial [rho-] mutations observed on the background of gene PHO85 inactivation. In this study it was shown that the appearance of [rho-] clones is a result of some defects in mitochondrial nucleoid transmission from mother to bud cells.

AB - Cyclin-dependent phosphoprotein kinases (CDK) play essential role in the regulation of the progression through different phases of the cell cycle, being also involved in metabolic regulation and in actin cytoskeleton organization. The Saccharomyces cerevisiae CDK Pho85p is associated with 10 different cyclins and phosphorylates different substrates, among these transcription factors Pho4p and Gcn4p, and a protein involved in actin polymerization being a homologue of amphiphysin 1 of mammalian Rvs167p. It is known that mutations in the PHO85 gene have a multiple pleotropic effects, one of these effects being a rapid accumulation of mitochondrial [rho-] mutations observed on the background of gene PHO85 inactivation. In this study it was shown that the appearance of [rho-] clones is a result of some defects in mitochondrial nucleoid transmission from mother to bud cells.

UR - http://www.scopus.com/inward/record.url?scp=33745113250&partnerID=8YFLogxK

M3 - статья

C2 - 16711391

VL - 47

SP - 917

EP - 924

JO - Цитология

JF - Цитология

SN - 0041-3771

IS - 10

ER -

ID: 5120392