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FtsZ环在叶绿体中部分裂位点的组装取决于AtMinE1与ARC11/AtMinD1活性之间的平衡。

The assembly of the FtsZ ring at the mid-chloroplast division site depends on a balance between the activities of AtMinE1 and ARC11/AtMinD1.

作者信息

Fujiwara Makoto T, Hashimoto Haruki, Kazama Yusuke, Abe Tomoko, Yoshida Shigeo, Sato Naoki, Itoh Ryuuichi D

机构信息

RIKEN, Hirosawa 2-1, Wako, Saitama 351-0198, Japan.

出版信息

Plant Cell Physiol. 2008 Mar;49(3):345-61. doi: 10.1093/pcp/pcn012. Epub 2008 Jan 19.

Abstract

Chloroplast division comprises a sequence of events that facilitate symmetric binary fission and that involve prokaryotic-like stromal division factors such as tubulin-like GTPase FtsZ and the division site regulator MinD. In Arabidopsis, a nuclear-encoded prokaryotic MinE homolog, AtMinE1, has been characterized in terms of its effects on a dividing or terminal chloroplast state in a limited series of leaf tissues. However, the relationship between AtMinE1 expression and chloroplast phenotype remains to be fully elucidated. Here, we demonstrate that a T-DNA insertion mutation in AtMinE1 results in a severe inhibition of chloroplast division, producing motile dots and short filaments of FtsZ. In AtMinE1 sense (overexpressor) plants, dividing chloroplasts possess either single or multiple FtsZ rings located at random intervals and showing constriction depth, mainly along the chloroplast polarity axis. The AtMinE1 sense plants displayed equivalent chloroplast phenotypes to arc11, a loss-of-function mutant of AtMinD1 which forms replicating mini-chloroplasts. Furthermore, a certain population of FtsZ rings formed within developing chloroplasts failed to initiate or progress the membrane constriction of chloroplasts and consequentially to complete chloroplast fission in both AtMinE1 sense and arc11/atminD1 plants. Our present data thus demonstrate that the chloroplast division site placement involves a balance between the opposing activities of AtMinE1 and AtMinD1, which acts to prevent FtsZ ring formation anywhere outside of the mid-chloroplast. In addition, the imbalance caused by an AtMinE1 dominance causes multiple, non-synchronous division events at the single chloroplast level, as well as division arrest, which becomes apparent as the chloroplasts mature, in spite of the presence of FtsZ rings.

摘要

叶绿体分裂包括一系列促进对称二分裂的事件,这些事件涉及类似原核生物的基质分裂因子,如微管蛋白样GTP酶FtsZ和分裂位点调节因子MinD。在拟南芥中,一种核编码的原核MinE同源物AtMinE1,已在一系列有限的叶组织中,就其对分裂或终末叶绿体状态的影响进行了表征。然而,AtMinE1表达与叶绿体表型之间的关系仍有待充分阐明。在这里,我们证明AtMinE1中的T-DNA插入突变导致叶绿体分裂受到严重抑制,产生FtsZ的运动点和短丝。在AtMinE1有义(过表达)植物中,分裂的叶绿体具有单个或多个FtsZ环,这些环以随机间隔分布,并显示出缢缩深度,主要沿叶绿体极性轴。AtMinE1有义植物表现出与arc11等效的叶绿体表型,arc11是AtMinD1的功能缺失突变体,可形成复制性小叶绿体。此外,在发育中的叶绿体中形成的一定数量的FtsZ环未能启动或推进叶绿体的膜缢缩,因此在AtMinE1有义植物和arc11/atminD1植物中均无法完成叶绿体分裂。我们目前的数据因此表明,叶绿体分裂位点的定位涉及AtMinE1和AtMinD1相反活性之间的平衡,后者的作用是防止在叶绿体中部以外的任何地方形成FtsZ环。此外,AtMinE1优势导致的失衡会在单个叶绿体水平上引起多个非同步分裂事件以及分裂停滞,尽管存在FtsZ环,但随着叶绿体成熟,这种情况会变得明显。

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