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首页> 外文期刊>Biochemistry and Cell Biology >Identification of the linker histone H1 as a protein kinase Cε-binding protein in vascular smooth muscle.
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Identification of the linker histone H1 as a protein kinase Cε-binding protein in vascular smooth muscle.

机译:接头组蛋白H1作为血管平滑肌中蛋白激酶Cε结合蛋白的鉴定。

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A variety of anchoring proteins target specific protein kinase C (PKC) isoenzymes to particular subcellular locations or multimeric signaling complexes, thereby achieving a high degree of substrate specificity by localizing the kinase in proximity to specific substrates. PKCε is widely expressed in smooth muscle tissues, but little is known about its targeting and substrate specificity. We have used a Far-Western (overlay) approach to identify PKCε-binding proteins in vascular smooth muscle of the rat aorta. Proteins of ~32 and 34 kDa in the Triton-insoluble fraction were found to bind PKCε in a phospholipid/diacylglycerol-dependent manner. Although of similar molecular weight to RACK-1, a known PKCε-binding protein, these proteins were separated from RACK-1 by SDS-PAGE and differential NaCl extraction and were not recognized by an antibody to RACK-1. The PKCε-binding proteins were further purified from the Triton-insoluble fraction and identified by de novo sequencing of selected tryptic peptides by tandem mass spectrometry as variants of the linker histone H1. Their identity was confirmed by Western blotting with anti-histone H1 and the demonstration that purified histone H1 binds PKCε in the presence of phospholipid and diacylglycerol but absence of Ca2+. The interaction of PKCε with histone H1 was specific since no interaction was observed with histones H2A, H2S or H3S. Bound PKCε phosphorylated histone H1 in a phospholipid/diacylglycerol-dependent but Ca2+-independent manner. Ca2+-dependent PKC was also shown to interact with histone H1 but not other histones. These results suggest that histone H1 is both an anchoring protein and a substrate for activated PKCε and other PKC isoenzymes and likely serves to localize activated PKCs that translocate to the nucleus in the vicinity of specific nuclear substrates including histone H1 itself. Since PKC isoenzymes have been implicated in regulation of gene expression, stable interaction with histone H1 may be an important step in this process.
机译:多种锚定蛋白将特定的蛋白激酶C(PKC)同功酶靶向特定的亚细胞位置或多聚体信号复合物,从而通过将激酶定位在特定的底物附近来实现高度的底物特异性。 PKCε在平滑肌组织中广泛表达,但对其靶向性和底物特异性知之甚少。我们已经使用了一种Far-Western(重叠)方法来鉴定大鼠主动脉血管平滑肌中的PKCε结合蛋白。 Triton不溶级分中约32和34 kDa的蛋白质被发现以磷脂/二酰基甘油依赖性方式结合PKCε。尽管分子量与已知的PKCε结合蛋白RACK-1相似,但这些蛋白通过SDS-PAGE和差分NaCl提取与RACK-1分离,并且未被RACK-1抗体识别。从Triton不溶级分中进一步纯化PKCε结合蛋白,并通过串联质谱法从头对选定的胰蛋白酶肽进行从头测序来鉴定为连接蛋白组蛋白H1的变体。它们的身份通过抗组蛋白H1的Western印迹法和在磷脂和二酰基甘油存在但不存在Ca2 +的情况下纯化的组蛋白H1与PKCε结合的证实得到了证实。 PKCε与组蛋白H1的相互作用是特异性的,因为未观察到与组蛋白H2A,H2S或H3S的相互作用。结合的PKCε以磷脂/二酰基甘油依赖性但Ca2 +依赖性方式磷酸化组蛋白H1。还显示了依赖Ca2 +的PKC与组蛋白H1相互作用,但不与其他组蛋白相互作用。这些结果表明,组蛋白H1既是锚定蛋白,又是活化的PKCε和其他PKC同工酶的底物,并且可能用于将活化的PKC定位到包括组蛋白H1本身在内的特定核底物附近。由于PKC同工酶与基因表达的调节有关,因此与组蛋白H1的稳定相互作用可能是该过程中的重要步骤。

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