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拟南芥叶绿体β类 chaperonins 与内源性 cpn10 同源物在体外相互作用。

Chloroplast β chaperonins from A. thaliana function with endogenous cpn10 homologs in vitro.

机构信息

Department of Biochemistry and Molecular Biology, Tel Aviv University, 69978 Tel Aviv, Israel.

出版信息

Plant Mol Biol. 2011 Sep;77(1-2):105-15. doi: 10.1007/s11103-011-9797-6. Epub 2011 Jun 3.

Abstract

The involvement of type I chaperonins in bacterial and organellar protein folding has been well-documented. In E. coli and mitochondria, these ubiquitous and highly conserved proteins form chaperonin oligomers of identical 60 kDa subunits (cpn60), while in chloroplasts, two distinct cpn60 α and β subunit types co-exist together. The primary sequence of α and β subunits is ~50% identical, similar to their respective homologies to the bacterial GroEL. Moreover, the A. thaliana genome contains two α and four β genes. The functional significance of this variability in plant chaperonin proteins has not yet been elucidated. In order to gain insight into the functional variety of the chloroplast chaperonin family members, we reconstituted β homo-oligomers from A. thaliana following their expression in bacteria and subjected them to a structure-function analysis. Our results show for the first time, that A. thaliana β homo-oligomers can function in vitro with authentic chloroplast co-chaperonins (ch-cpn10 and ch-cpn20). We also show that oligomers made up of different β subunit types have unique properties and different preferences for co-chaperonin partners. We propose that chloroplasts may contain active β homo-oligomers in addition to hetero-oligomers, possibly reflecting a variety of cellular roles.

摘要

I 型分子伴侣在细菌和细胞器蛋白折叠中的作用已经得到了充分的证明。在大肠杆菌和线粒体中,这些普遍存在且高度保守的蛋白质形成相同的 60 kDa 亚基(cpn60)的分子伴侣寡聚物,而在叶绿体中,两种不同的 cpn60α和β亚基类型共存。α和β亚基的一级序列约有 50%的同源性,与细菌 GroEL 的同源性相似。此外,拟南芥基因组包含两个α和四个β基因。这种植物分子伴侣蛋白的变异性的功能意义尚未阐明。为了深入了解叶绿体分子伴侣家族成员的功能多样性,我们在细菌中表达后,从拟南芥中重新构建了β同源寡聚体,并对其进行了结构-功能分析。我们的结果首次表明,拟南芥β同源寡聚体能在体外与真正的叶绿体共伴侣(ch-cpn10 和 ch-cpn20)一起发挥作用。我们还表明,由不同β亚基类型组成的寡聚体具有独特的性质和对共伴侣的不同偏好。我们提出,叶绿体可能除了异源寡聚体外还含有活性的β同源寡聚体,可能反映了多种细胞功能。

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