古生物转录。

IF 3.6 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Transcription-Austin Pub Date : 2020-10-01 Epub Date: 2020-10-28 DOI:10.1080/21541264.2020.1838865
Breanna R Wenck, Thomas J Santangelo
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引用次数: 0

摘要

日益复杂的生化和遗传技术正在揭示控制古细菌基因表达的调控因子和机制。虽然调控策略存在一些普遍的相似性,但古细菌特异性调控策略正在出现,以补充古细菌领域所采用的古细菌-细菌和古细菌-真核生物共享调控机制的复杂拼凑。原核古细菌编码的核心转录元件与真核生物的转录装置具有同源性,它们还共享一种简化的类真核生物启动机制,但也采用细菌系统常用的策略来调控启动子的使用并影响延伸-终止决策。我们回顾了最近建立的完整的古细菌转录周期,重点介绍了古细菌转录界的最新发现,并详细介绍了对古细菌转录施加的不断扩大的启动后调控。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Archaeal transcription.

Increasingly sophisticated biochemical and genetic techniques are unraveling the regulatory factors and mechanisms that control gene expression in the Archaea. While some similarities in regulatory strategies are universal, archaeal-specific regulatory strategies are emerging to complement a complex patchwork of shared archaeal-bacterial and archaeal-eukaryotic regulatory mechanisms employed in the archaeal domain. The prokaryotic archaea encode core transcription components with homology to the eukaryotic transcription apparatus and also share a simplified eukaryotic-like initiation mechanism, but also deploy tactics common to bacterial systems to regulate promoter usage and influence elongation-termination decisions. We review the recently established complete archaeal transcription cycle, highlight recent findings of the archaeal transcription community and detail the expanding post-initiation regulation imposed on archaeal transcription.

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来源期刊
Transcription-Austin
Transcription-Austin BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
6.50
自引率
5.60%
发文量
9
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