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首页> 外文期刊>Journal of Molecular Biology >EXPRESSION AND STRUCTURAL ANALYSIS OF 14-3-3 PROTEINS
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EXPRESSION AND STRUCTURAL ANALYSIS OF 14-3-3 PROTEINS

机译:14-3-3蛋白的表达与结构分析

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The 14-3-3 family of proteins plays a role in a wide variety of cellular functions including regulation of protein kinase C and exocytosis. Using antisera specific for the N termini of 14-3-3 isoforms described previously and an additional antiserum specific for the C terminus of epsilon isoform, protease digestion of intact 14-3-3 showed that the N-terminal half of 14-3-3 (a 16 kDa fragment) was an intact, dimeric domain of the protein. Two isoforms of 14-3-3, tau and epsilon, were expressed in E. coli and their secondary structure was shown by circular dichroism to be identical to wild-type protein, and expression of N-terminally-deleted epsilon 14-3-3 protein showed that the N-terminal 26 amino acids are important for dimerization. Intact 14-3-3 is a potent inhibitor of protein kinase C, but the N-terminal domain does not inhibit PKC activity Site-specific mutagenesis of several regions in the tau isoform of 14-3-3, including the mutation of a putative pseudosubstrate site to a potential substrate sequence, did not alter its inhibitory activity. Intact 14-3-3 proteins are phosphorylated by protein kinase C with a low stoichiometry, but truncated isoforms are phosphorylated much more efficiently by this kinase. This may imply that the proteins may adopt a different structural conformation, possibly upon binding to the membrane, which could modulate their activity 14-3-3 proteins are found at high concentration on synaptic plasma membranes and this binding is mediated through the N-terminal 12 kDa of 14-3-3. [References: 40]
机译:14-3-3蛋白家族在多种细胞功能中起作用,包括调节蛋白激酶C和胞吐作用。使用先前描述的对14-3-3亚型的N末端具有特异性的抗血清和对ε亚型的C末端具有特异性的其他抗血清,完整的14-3-3的蛋白酶消化显示14-3-3的N末端一半3(16kDa的片段)是蛋白质的完整二聚结构域。在大肠杆菌中表达了14-3-3的两个同工型tau和epsilon,它们的二级结构通过圆二色性显示与野生型蛋白相同,并表达了N末端缺失的epsilon 14-3- 3个蛋白质显示N末端26个氨基酸对于二聚化很重要。完整的14-3-3是一种有效的蛋白激酶C抑制剂,但N末端结构域不抑制PKC活性14-3-3的tau亚型中几个区域的位点特异性诱变,包括推定的突变假底物位点为潜在的底物序列,并未改变其抑制活性。完整的14-3-3蛋白被化学计量低的蛋白激酶C磷酸化,但是截短的同工型被该激酶更有效地磷酸化。这可能意味着蛋白质可能会采取不同的结构构象,可能在结合到膜上后就可以调节其活性。14-3-3蛋白在突触质膜上的浓度很高,并且这种结合是通过N端介导的12kDa的14-3-3。 [参考:40]

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