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MjHSP16.5 的四级结构和功能的变化归因于 IXI 基序的缺失和 α-晶体蛋白结构域中 R107G 的取代。

Changes in the quaternary structure and function of MjHSP16.5 attributable to deletion of the IXI motif and introduction of the substitution, R107G, in the α-crystallin domain.

机构信息

Biophysical Sciences Institute, University of Durham, , South Road, Durham DH1 LE, UK.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2013 Mar 25;368(1617):20120327. doi: 10.1098/rstb.2012.0327. Print 2013 May 5.

Abstract

The archael small heat-shock protein (sHSP), MjHSP16.5, forms a 24-subunit oligomer with octahedral symmetry. Here, we demonstrate that the IXI motif present in the C-terminal domain is necessary for the oligomerization of MjHSP16.5. Removal increased the in vitro chaperone activity with citrate synthase as the client protein. Less predictable were the effects of the R107G substitution in MjHSP16.5 because of the differences in the oligomerization of metazoan and non-metazoan sHSPs. We present the crystal structure for MjHSP16.5 R107G and compare this with an improved (2.5 Å) crystal structure for wild-type (WT) MjHSP16.5. Although no significant structural differences were found in the crystal, using cryo-electron microscopy, we identified two 24mer species with octahedral symmetry for the WT MjHSP16.5 both at room temperature and at 60°C, all showing two major species with the same diameter of 12.4 nm. Similarly, at room temperature, there are also two kinds of 12.4 nm oligomers for R107G MjHSP16.5, but in the 60°C sample, a larger 24mer species with a diameter of 13.6 nm was observed with significant changes in the fourfold symmetry axis and dimer-dimer interface. This highly conserved arginine, therefore, contributes to the quaternary organization of non-metazoan sHSP oligomers. Potentially, the R107G substitution has functional consequences as R107G MjHSP16.5 was far superior to the WT protein in protecting βL-crystallin against heat-induced aggregation.

摘要

古细菌小分子热休克蛋白 (sHSP) MjHSP16.5 形成具有八面体对称性的 24 亚基寡聚体。在这里,我们证明 C 端结构域中的 IXI 基序对于 MjHSP16.5 的寡聚化是必需的。去除该基序增加了体外伴侣活性,以柠檬酸合酶作为靶蛋白。更不可预测的是,MjHSP16.5 中的 R107G 取代的影响,因为后生动物和非后生动物 sHSPs 的寡聚化存在差异。我们提出了 MjHSP16.5 R107G 的晶体结构,并将其与改进的(2.5 Å)野生型(WT)MjHSP16.5 晶体结构进行了比较。尽管在晶体中没有发现明显的结构差异,但通过低温电子显微镜,我们确定了两种具有八面体对称性的 24 聚体物种,对于 WT MjHSP16.5,无论是在室温下还是在 60°C 下,均显示出两种主要的具有相同直径为 12.4nm 的物种。同样,在室温下,R107G MjHSP16.5 也有两种 12.4nm 的寡聚物,但在 60°C 的样品中,观察到一种直径为 13.6nm 的较大 24 聚体物种,四元对称轴和二聚体-二聚体界面发生了显著变化。因此,这种高度保守的精氨酸有助于非后生动物 sHSP 寡聚体的四级组织。可能的是,R107G 取代具有功能后果,因为 R107G MjHSP16.5 在保护βL-晶体蛋白免受热诱导聚集方面远优于 WT 蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f403/3638399/edb78f0e24a1/rstb20120327-g1.jpg

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