在哺乳动物细胞中进行的一项相互作用研究表明,HSPB2 与 BAG3 的结合力很弱,这种结合力受 HSPB3 的调节,而受 HSPB8 的抑制。

Cell Stress and Chaperones Pub Date : 2017-07-01 Epub Date: 2017-02-08 DOI:10.1007/s12192-017-0769-x
Federica F Morelli, Laura Mediani, Lonneke Heldens, Jessika Bertacchini, Ilaria Bigi, Arianna Dorotea Carrà, Jonathan Vinet, Serena Carra
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引用次数: 0

摘要

哺乳动物的十种小型热休克蛋白(sHSPs/HSPBs)表现出不同的表达特征,尽管其中大多数在骨骼肌和心肌中含量丰富。HSPBs 通过相互作用形成异源同源异构体,在哺乳动物细胞和肌肉中已发现含有 HSPB2/HSPB3 或 HSPB1/HSPB5 的复合物。此外,在哺乳动物、骨骼肌和心肌细胞中,HSPB8 还与 Hsc70/Hsp70 辅伴侣 BAG3 结合。HSPB8 与 BAG3 的相互作用可调节其稳定性和功能。也有报道称,在细胞中过表达时,HSPB5 和 HSPB6 与 BAG3 的关联较弱,这支持了 BAG3 可能间接调节几种 HSPB 功能的观点。然而,其他在肌肉中高表达的 HSPB(如 HSPB2 和 HSPB3)是否也与 BAG3 结合尚不清楚。在这里,我们报告了在哺乳动物细胞中,过表达时,HSPB2 与 BAG3 的结合亲和力弱于 HSPB8。HSPB2 与 HSPB8 竞争结合到 BAG3 上。相反,HSPB3 负向调节 HSPB2 与 BAG3 的结合。在表达 HSPB2、HSPB3、HSPB8 和 BAG3 的人类肌母细胞中,后者选择性地与 HSPB8 相互作用。综合这些数据,支持 HSPB8-BAG3 是首选相互作用的解释。
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An interaction study in mammalian cells demonstrates weak binding of HSPB2 to BAG3, which is regulated by HSPB3 and abrogated by HSPB8.

The ten mammalian small heat shock proteins (sHSPs/HSPBs) show a different expression profile, although the majority of them are abundant in skeletal and cardiac muscles. HSPBs form hetero-oligomers and homo-oligomers by interacting together and complexes containing, e.g., HSPB2/HSPB3 or HSPB1/HSPB5 have been documented in mammalian cells and muscles. Moreover, HSPB8 associates with the Hsc70/Hsp70 co-chaperone BAG3, in mammalian, skeletal, and cardiac muscle cells. Interaction of HSPB8 with BAG3 regulates its stability and function. Weak association of HSPB5 and HSPB6 with BAG3 has been also reported upon overexpression in cells, supporting the idea that BAG3 might indirectly modulate the function of several HSPBs. However, it is yet unknown whether other HSPBs highly expressed in muscles such as HSPB2 and HSPB3 also bind to BAG3. Here, we report that in mammalian cells, upon overexpression, HSPB2 binds to BAG3 with an affinity weaker than HSPB8. HSPB2 competes with HSPB8 for binding to BAG3. In contrast, HSPB3 negatively regulates HSPB2 association with BAG3. In human myoblasts that express HSPB2, HSPB3, HSPB8, and BAG3, the latter interacts selectively with HSPB8. Combining these data, it supports the interpretation that HSPB8-BAG3 is the preferred interaction.

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