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在G1-S边界检测与hypusine形成调节相关的多聚核糖体mRNA亚群。提出eIF-5A在DNA复制起始中的作用。

Detection of a sub-set of polysomal mRNAs associated with modulation of hypusine formation at the G1-S boundary. Proposal of a role for eIF-5A in onset of DNA replication.

作者信息

Hanauske-Abel H M, Slowinska B, Zagulska S, Wilson R C, Staiano-Coico L, Hanauske A R, McCaffrey T, Szabo P

机构信息

Department of Pediatrics, Cornell University Medical College-The New York Hospital, NY 10031, USA.

出版信息

FEBS Lett. 1995 Jun 12;366(2-3):92-8. doi: 10.1016/0014-5793(95)00493-s.

Abstract

S phase entry, i.e. start of DNA replication, is a crucial step in proliferation. Inhibition of S phase entry correlates with inhibition of hypusine formation, an event affecting only the eukaryotic initiation factor 5A (eIF-5A). Its hypusine-containing sequence was postulated to authorize polysomal utilization of specific transcripts for proteins necessary to enable DNA replication. Using mimosine to reversibly suppress the hypusine-forming deoxyhypusyl hydroxylase (E.C. 1.14.99.29) in cells while differentially displaying their polysomal versus non-polysomal mRNA populations, we report the detection and classification of several mRNA species that indeed disappear from and reappear at polysomes in concert with inhibition and disinhibition, respectively, of hypusine formation. Based on initial sequence data, two translationally controlled enzymes, both critical for proliferation, are identified as candicate products of such mRNAs, methionine adenosyltransferase (E.C. 2.5.1.6) and cytochrome-c oxidase (EC 1.9.3.1) subunit I. The existence of such putative hypusine-dependent messenger nucleic acids (hymns) provides the basis for a proposal on their molecular function in onset of multiplication.

摘要

进入S期,即DNA复制的开始,是细胞增殖中的关键步骤。抑制S期进入与抑制hypusine形成相关,这一事件仅影响真核起始因子5A(eIF - 5A)。据推测,其含hypusine的序列可使特定转录本在多核糖体上用于DNA复制所需蛋白质的利用。利用含羞草碱可逆地抑制细胞中形成hypusine的脱氧hypusyl羟化酶(E.C. 1.14.99.29),同时差异显示其多核糖体与非多核糖体mRNA群体,我们报告了几种mRNA种类的检测和分类,它们确实分别与hypusine形成的抑制和解除抑制相一致地从多核糖体上消失和重新出现。基于初始序列数据,两种对增殖至关重要的翻译调控酶被鉴定为这类mRNA的候选产物,即甲硫氨酸腺苷转移酶(E.C. 2.5.1.6)和细胞色素c氧化酶(EC 1.9.3.1)亚基I。这种假定的依赖hypusine的信使核酸(hymns)的存在为其在增殖起始中的分子功能的提议提供了基础。

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