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可转导的热休克蛋白20(HSP20)磷酸肽改变细胞骨架动力学。

Transducible heat shock protein 20 (HSP20) phosphopeptide alters cytoskeletal dynamics.

作者信息

Dreiza Catherine M, Brophy Colleen M, Komalavilas Padmini, Furnish Elizabeth J, Joshi Lokesh, Pallero Manuel A, Murphy-Ullrich Joanne E, von Rechenberg Moritz, Ho Yew-seng J, Richardson Bonnie, Xu Nafei, Zhen Yuejun, Peltier John M, Panitch Alyssa

机构信息

The Biodesign Institute at Arizona State University, Tempe, Arizona, USA.

出版信息

FASEB J. 2005 Feb;19(2):261-3. doi: 10.1096/fj.04-2911fje. Epub 2004 Dec 14.

Abstract

Activation of cyclic nucleotide dependent signaling pathways leads to relaxation of smooth muscle, alterations in the cytoskeleton of cultured cells, and increases in the phosphorylation of HSP20. To determine the effects of phosphorylated HSP20 on the actin cytoskeleton, phosphopeptide analogs of HSP20 were synthesized. These peptides contained 1) the amino acid sequence surrounding the phosphorylation site of HSP20, 2) a phosphoserine, and 3) a protein transduction domain. Treatment of Swiss 3T3 cells with phosphopeptide analogs of HSP20 led to loss of actin stress fibers and focal adhesion complexes as demonstrated by immunocytochemistry, interference reflection microscopy, and biochemical quantitation of globular-actin. Treatment with phosphopeptide analogs of HSP20 also led to dephosphorylation of the actin depolymerizing protein cofilin. Pull-down assays demonstrated that 14-3-3 proteins associated with phosphopeptide analogs of HSP20 (but not peptide analogs in which the serine was not phosphorylated). The binding of 14-3-3 protein to phosphopeptide analogs of HSP20 prevented the association of cofilin with 14-3-3. These data suggest that HSP20 may modulate actin cytoskeletal dynamics by competing with the actin depolymerizing protein cofilin for binding to the scaffolding protein 14-3-3. Interestingly, the entire protein was not needed for this effect, suggesting that the association is modulated by phosphopeptide motifs of HSP20. These data also suggest the possibility that cyclic nucleotide dependent relaxation of smooth muscle may be mediated by a thin filament (actin) regulatory process. Finally, these data suggest that protein transduction can be used as a tool to elucidate the specific function of peptide motifs of proteins.

摘要

环核苷酸依赖性信号通路的激活会导致平滑肌松弛、培养细胞的细胞骨架改变以及热休克蛋白20(HSP20)磷酸化增加。为了确定磷酸化的HSP20对肌动蛋白细胞骨架的影响,合成了HSP20的磷酸肽类似物。这些肽包含:1)HSP20磷酸化位点周围的氨基酸序列;2)一个磷酸丝氨酸;3)一个蛋白质转导结构域。用HSP20的磷酸肽类似物处理瑞士3T3细胞,通过免疫细胞化学、干涉反射显微镜以及球状肌动蛋白的生化定量分析表明,会导致肌动蛋白应力纤维和粘着斑复合物的丧失。用HSP20的磷酸肽类似物处理还会导致肌动蛋白解聚蛋白丝切蛋白的去磷酸化。下拉实验表明,14-3-3蛋白与HSP20的磷酸肽类似物结合(但不与丝氨酸未磷酸化的肽类似物结合)。14-3-3蛋白与HSP20的磷酸肽类似物的结合阻止了丝切蛋白与14-3-3的结合。这些数据表明,HSP20可能通过与肌动蛋白解聚蛋白丝切蛋白竞争结合支架蛋白14-3-3来调节肌动蛋白细胞骨架动力学。有趣的是,这种效应并不需要整个蛋白质,这表明这种结合是由HSP20的磷酸肽基序调节的。这些数据还表明,平滑肌的环核苷酸依赖性松弛可能由细丝(肌动蛋白)调节过程介导。最后,这些数据表明蛋白质转导可作为一种工具来阐明蛋白质肽基序的特定功能。

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