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枯草芽孢杆菌SMC复合物的动态组装、定位及蛋白水解作用

Dynamic assembly, localization and proteolysis of the Bacillus subtilis SMC complex.

作者信息

Mascarenhas Judita, Volkov Arsen V, Rinn Cornelia, Schiener Jens, Guckenberger Reinhard, Graumann Peter L

机构信息

Biochemie, Fachbereich Chemie, Hans-Meerwein-Strasse, Philipps-Universität Marburg, 35032 Marburg, Germany.

出版信息

BMC Cell Biol. 2005 Jun 29;6:28. doi: 10.1186/1471-2121-6-28.

Abstract

BACKGROUND

SMC proteins are key components of several protein complexes that perform vital tasks in different chromosome dynamics. Bacterial SMC forms a complex with ScpA and ScpB that is essential for chromosome arrangement and segregation. The complex localizes to discrete centres on the nucleoids that during most of the time of the cell cycle localize in a bipolar manner. The complex binds to DNA and condenses DNA in an as yet unknown manner.

RESULTS

We show that in vitro, ScpA and ScpB form different complexes with each other, among which the level of the putative 2 ScpA/4 ScpB complex showed a pronounced decrease in level upon addition of SMC protein. Different mutations of the ATPase-binding pocket of SMC reduced, but did not abolish interaction of mutant SMC with ScpA and ScpB. The loss of SMC ATPase activity led to a loss of function in vivo, and abolished proper localization of the SMC complex. The formation of bipolar SMC centres was also lost after repression of gyrase activity, and was abnormal during inhibition of replication, resulting in single central clusters. Resumption of replication quickly re-established bipolar SMC centres, showing that proper localization depends on ongoing replication. We also found that the SMC protein is subject to induced proteolysis, most strikingly as cells enter stationary phase, which is partly achieved by ClpX and LonA proteases. Atomic force microscopy revealed the existence of high order rosette-like SMC structures in vitro, which might explain the formation of the SMC centres in vivo.

CONCLUSION

Our data suggest that a ScpA/ScpB sub-complex is directly recruited into the SMC complex. This process does not require SMC ATPase activity, which, however, appears to facilitate loading of ScpA and ScpB. Thus, the activity of SMC could be regulated through binding and release of ScpA and ScpB, which has been shown to affect SMC ATPase activity. The proper bipolar localization of the SMC complex depends on a variety of physiological aspects: ongoing replication, ATPase activity and chromosome supercoiling. Because the cellular concentration of SMC protein is also regulated at the posttranscriptional level, the activity of SMC is apparently regulated at multiple levels.

摘要

背景

SMC蛋白是几种蛋白质复合物的关键组成部分,这些复合物在不同的染色体动态过程中执行重要任务。细菌SMC与ScpA和ScpB形成复合物,这对于染色体的排列和分离至关重要。该复合物定位于类核上离散的中心,在细胞周期的大部分时间里以双极方式定位。该复合物与DNA结合并以一种尚不清楚的方式使DNA浓缩。

结果

我们发现,在体外,ScpA和ScpB相互形成不同的复合物,其中假定的2 ScpA/4 ScpB复合物的水平在添加SMC蛋白后显著降低。SMC的ATP酶结合口袋的不同突变降低了,但并未消除突变型SMC与ScpA和ScpB的相互作用。SMC ATP酶活性的丧失导致体内功能丧失,并消除了SMC复合物的正确定位。在抑制促旋酶活性后,双极SMC中心的形成也消失了,并且在抑制复制期间异常,导致单个中央簇。复制的恢复迅速重新建立了双极SMC中心,表明正确的定位取决于正在进行的复制。我们还发现,SMC蛋白会受到诱导性蛋白水解作用,最明显的是在细胞进入稳定期时,这部分是由ClpX和LonA蛋白酶实现的。原子力显微镜揭示了体外存在高阶玫瑰花结样SMC结构,这可能解释了体内SMC中心的形成。

结论

我们的数据表明,ScpA/ScpB亚复合物直接被招募到SMC复合物中。这个过程不需要SMC ATP酶活性,然而,它似乎有助于ScpA和ScpB的加载。因此,SMC的活性可以通过ScpA和ScpB的结合和释放来调节,这已被证明会影响SMC ATP酶活性。SMC复合物的正确双极定位取决于多种生理因素:正在进行的复制、ATP酶活性和染色体超螺旋。由于SMC蛋白的细胞浓度也在转录后水平受到调节,因此SMC的活性显然在多个水平上受到调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3933/1188057/f2c429b31d6f/1471-2121-6-28-1.jpg

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