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肽聚糖合酶 PBP 与质体分裂 2 相互作用,促进Physcomitrium patens 中叶绿体的分裂。

The peptidoglycan synthase PBP interacts with PLASTID DIVISION2 to promote chloroplast division in Physcomitrium patens.

机构信息

Beijing Key Laboratory of Plant Gene Resources and Biotechnology for Carbon Reduction and Environmental Improvement, College of Life Sciences, Capital Normal University, Beijing, 100048, China.

出版信息

New Phytol. 2024 Feb;241(3):1115-1129. doi: 10.1111/nph.19268. Epub 2023 Sep 18.

Abstract

The peptidoglycan (PG) layer, a core component of the bacterial cell wall, has been retained in the Physcomitrium patens chloroplasts. The PG layer entirely encompasses the P. patens chloroplast, including the division site, but how PG biosynthesis cooperates with the constriction of two envelope membranes at the chloroplast division site remains elusive. Here, focusing on the PG synthase penicillin-binding protein (PBP), we performed cytological and molecular analyses to dissect the mechanism of chloroplast division in P. patens. We showed that PBP, acting in the final step of PG biosynthesis, is likely a chloroplast inner envelope protein that can aggregate at mid-chloroplasts during chloroplast division. Physcomitrium patens had five orthologs of PLASTID DIVISION2 (PDV2), an outer envelope component of the chloroplast division complex. Our data indicated that PpPDV2 proteins interact with PpPBP and are responsible for recruiting PpPBP to the chloroplast division site, in addition to PpDRP5B. Furthermore, we found that PBP deletion and carbenicillin application restrain constriction of the chloroplast division complex, rather than its assembly. This work provides direct molecular evidence for a link between chloroplast division of P. patens and PG biosynthesis and indicates that PG biosynthesis is required for the constriction of the chloroplast division apparatus in P. patens.

摘要

质壁层(PG)是细菌细胞壁的核心组成部分,在Physcomitrium patens 叶绿体中得以保留。PG 层完全包围着 P. patens 叶绿体,包括分裂部位,但 PG 生物合成如何与叶绿体分裂部位两个包膜的收缩相配合仍不清楚。在这里,我们专注于 PG 合酶青霉素结合蛋白(PBP),通过细胞学和分子分析来剖析 P. patens 叶绿体分裂的机制。我们表明,在 PG 生物合成的最后一步起作用的 PBP 可能是叶绿体内膜蛋白,在叶绿体分裂过程中可以在中叶体聚集。Physcomitrium patens 有五个质体分裂 2(PDV2)的同源物,PDV2 是叶绿体分裂复合物的外膜成分。我们的数据表明,PpPDV2 蛋白与 PpPBP 相互作用,并负责将 PpPBP 招募到叶绿体分裂部位,除了 PpDRP5B 之外。此外,我们发现 PBP 缺失和羧苄青霉素处理会抑制叶绿体分裂复合物的收缩,而不是其组装。这项工作为 P. patens 的叶绿体分裂和 PG 生物合成之间的联系提供了直接的分子证据,并表明 PG 生物合成是 P. patens 中叶绿体分裂装置收缩所必需的。

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