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人类热休克蛋白22(HSPB8)与其他小分子热休克蛋白的相互作用。

Interaction of human HSP22 (HSPB8) with other small heat shock proteins.

作者信息

Sun Xiankui, Fontaine Jean-Marc, Rest Joshua S, Shelden Eric A, Welsh Michael J, Benndorf Rainer

机构信息

Departments of Cell and Developmental Biology, University of Michigan Medical School, Ann Arbor, Michigan 48109, USA.

出版信息

J Biol Chem. 2004 Jan 23;279(4):2394-402. doi: 10.1074/jbc.M311324200. Epub 2003 Oct 31.

Abstract

Mammalian small heat shock proteins (sHSP) are abundant in muscles and are implicated in both muscle function and myopathies. Recently a new sHSP, HSP22 (HSPB8, H11), was identified in the human heart by its interaction with HSP27 (HSPB1). Using phylogenetic analysis we show that HSP22 is a true member of the sHSP superfamily. sHSPs interact with each other and form homo- and hetero-oligomeric complexes. The function of these complexes is poorly understood. Using gel filtration HPLC, the yeast two-hybrid method, immunoprecipitation, cross-linking, and fluorescence resonance energy transfer microscopy, we report that (i). HSP22 forms high molecular mass complexes in the heart, (ii). HSP22 interacts with itself, cvHSP (HSPB7), MKBP (HSPB2) and HSP27, and (iii). HSP22 has two binding domains (N- and C-terminal) that are specific for different binding partners. HSP22 homo-dimers are formed through N-N and N-C interactions, and HSP22-cvHSP hetero-dimers through C-C interaction. HSP22-MKBP and HSP22-HSP27 hetero-dimers involve the N and C termini of HSP22 and HSP27, respectively, but appear to require full-length protein as a binding partner.

摘要

哺乳动物小热休克蛋白(sHSP)在肌肉中含量丰富,与肌肉功能和肌病均有关联。最近,一种新的sHSP,即HSP22(HSPB8,H11),因其与HSP27(HSPB1)的相互作用而在人类心脏中被鉴定出来。通过系统发育分析,我们表明HSP22是sHSP超家族的真正成员。sHSP相互作用并形成同型和异型寡聚体复合物。这些复合物的功能尚不清楚。利用凝胶过滤高效液相色谱法、酵母双杂交法、免疫沉淀法、交联法和荧光共振能量转移显微镜技术,我们报告:(i). HSP22在心脏中形成高分子量复合物;(ii). HSP22与自身、cvHSP(HSPB7)、MKBP(HSPB2)和HSP27相互作用;(iii). HSP22有两个结合结构域(N端和C端),分别对不同的结合伴侣具有特异性。HSP22同型二聚体通过N-N和N-C相互作用形成,HSP22-cvHSP异型二聚体通过C-C相互作用形成。HSP22-MKBP和HSP22-HSP27异型二聚体分别涉及HSP22和HSP27的N端和C端,但似乎需要全长蛋白作为结合伴侣。

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