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RNA polymerase III transcription apparatus : Structure and transcription regulation. / Nikitina, T. V.; Tishchenko, L. I.

в: Molekulyarnaya Biologiya, Том 39, № 2, 01.12.2005, стр. 179-192.

Результаты исследований: Научные публикации в периодических изданиях › Обзорная статья › Рецензирование

Harvard

Nikitina, TV & Tishchenko, LI 2005, 'RNA polymerase III transcription apparatus: Structure and transcription regulation', Molekulyarnaya Biologiya, Том. 39, № 2, стр. 179-192.

APA

Vancouver

Nikitina TV, Tishchenko LI. RNA polymerase III transcription apparatus: Structure and transcription regulation. Molekulyarnaya Biologiya. 2005 Дек. 1;39(2):179-192.

Author

Nikitina, T. V. ; Tishchenko, L. I. / RNA polymerase III transcription apparatus : Structure and transcription regulation. в: Molekulyarnaya Biologiya. 2005 ; Том 39, № 2. стр. 179-192.

BibTeX

@article{6da44ffbceb64b4fbe4bbae9bf772cad,
title = "RNA polymerase III transcription apparatus: Structure and transcription regulation",
abstract = "RNA polymerase III is a complex multi-subunit enzyme directing transcription of small stable non-translated RNA genes: tRNAs, 5S rRNA, Alu-RNA, U6 snRNA genes and some others (class III genes). Because of its complexity the enzyme is the worst studied among three forms of eukariotic RNA polymerases, but it draws more attention of the researchers in recent years. The reason is that new data appeared about an essential role of RNA polymerase III RNA products in such important cell processes as growth, proliferation and differentiation. It was shown that the RNA product levels are changed depending on cell growth rate and cell cycle stage, during cancer transformation, virus infection and heat shock, and either depend on physiological state of the cell (slow and active proliferation and apoptosis). In this review we consider the structure and function of RNA polymerase HI, its general transcription factors and holoenzyme, the structure of different class III gene promoters, the preinitiation complex assembly and the transcription cycle. The second part of the review is devoted to the regulation of class III gene transcription in dependence on cell cycle stage, growth factor influence and cell growth rate, during cell transformation and apoptosis.",
author = "Nikitina, {T. V.} and Tishchenko, {L. I.}",
year = "2005",
month = dec,
day = "1",
language = "English",
volume = "39",
pages = "179--192",
journal = "МОЛЕКУЛЯРНАЯ БИОЛОГИЯ",
issn = "0026-8984",
publisher = "Российская академия наук",
number = "2",

}

RIS

TY - JOUR

T1 - RNA polymerase III transcription apparatus

T2 - Structure and transcription regulation

AU - Nikitina, T. V.

AU - Tishchenko, L. I.

PY - 2005/12/1

Y1 - 2005/12/1

N2 - RNA polymerase III is a complex multi-subunit enzyme directing transcription of small stable non-translated RNA genes: tRNAs, 5S rRNA, Alu-RNA, U6 snRNA genes and some others (class III genes). Because of its complexity the enzyme is the worst studied among three forms of eukariotic RNA polymerases, but it draws more attention of the researchers in recent years. The reason is that new data appeared about an essential role of RNA polymerase III RNA products in such important cell processes as growth, proliferation and differentiation. It was shown that the RNA product levels are changed depending on cell growth rate and cell cycle stage, during cancer transformation, virus infection and heat shock, and either depend on physiological state of the cell (slow and active proliferation and apoptosis). In this review we consider the structure and function of RNA polymerase HI, its general transcription factors and holoenzyme, the structure of different class III gene promoters, the preinitiation complex assembly and the transcription cycle. The second part of the review is devoted to the regulation of class III gene transcription in dependence on cell cycle stage, growth factor influence and cell growth rate, during cell transformation and apoptosis.

AB - RNA polymerase III is a complex multi-subunit enzyme directing transcription of small stable non-translated RNA genes: tRNAs, 5S rRNA, Alu-RNA, U6 snRNA genes and some others (class III genes). Because of its complexity the enzyme is the worst studied among three forms of eukariotic RNA polymerases, but it draws more attention of the researchers in recent years. The reason is that new data appeared about an essential role of RNA polymerase III RNA products in such important cell processes as growth, proliferation and differentiation. It was shown that the RNA product levels are changed depending on cell growth rate and cell cycle stage, during cancer transformation, virus infection and heat shock, and either depend on physiological state of the cell (slow and active proliferation and apoptosis). In this review we consider the structure and function of RNA polymerase HI, its general transcription factors and holoenzyme, the structure of different class III gene promoters, the preinitiation complex assembly and the transcription cycle. The second part of the review is devoted to the regulation of class III gene transcription in dependence on cell cycle stage, growth factor influence and cell growth rate, during cell transformation and apoptosis.

UR - http://www.scopus.com/inward/record.url?scp=20844454739&partnerID=8YFLogxK

M3 - Review article

C2 - 15856940

AN - SCOPUS:20844454739

VL - 39

SP - 179

EP - 192

JO - МОЛЕКУЛЯРНАЯ БИОЛОГИЯ

JF - МОЛЕКУЛЯРНАЯ БИОЛОГИЯ

SN - 0026-8984

IS - 2

ER -

ID: 53110911