Molecular mechanism of vde-initiated intein homing in yeast nuclear genome.

Advances in Biophysics Pub Date : 2004-01-01
Tomoyuki Fukuda, Yuri Nagai, Yoshikazu Ohya
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Abstract

In Saccharomyces cerevisiae, VMAI intein encodes a homing endonuclease termed VDE which is produced by an autocatalytic protein splicing reaction. VDE introduces a DSB at its recognition sequence on intein-minus allele, resulting in the lateral transfer of VMAI intein. In this review, we summarize a decade of in vitro study on VDE and describe our recent study on the in vivo behavior of both VDE and host proteins involved in intein mobility. Meiotic DSBs caused by VDE are repaired in the similar pathway to that working in meiotic recombination induced by Spollp-mediated DSBs. Meiosis-specific DNA cleavage and homing is shown to be guaranteed by the two distinct mechanisms, the subcellular localization of VDE and a requirement of premeiotic DNA replication. Based on these lines of evidence, we present the whole picture of molecular mechanism of VDEinitiated homing in yeast cells.

酵母核基因组中vde启动蛋白归巢的分子机制。
在酿酒酵母中,VMAI蛋白编码一种称为VDE的归巢内切酶,该酶是由自催化蛋白剪接反应产生的。VDE在其识别序列内负等位基因上引入DSB,导致VMAI内基因的横向转移。在这篇综述中,我们总结了近十年来VDE的体外研究,并描述了我们最近对VDE和宿主蛋白参与内部迁移的体内行为的研究。由VDE引起的减数分裂dsb的修复途径与由spollp介导的dsb诱导减数分裂重组的修复途径相似。减数分裂特异性DNA切割和归巢是由两种不同的机制保证的,即VDE的亚细胞定位和减数分裂前DNA复制的要求。基于这些证据,我们提出了酵母细胞中vde1启动归巢的分子机制的全图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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