首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >S-100 (a and p) binding peptide (TRTK-12) blocks S-100/GFAP interaction: identification of a putative S-100 target epitope within the head domain of GFAP
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S-100 (a and p) binding peptide (TRTK-12) blocks S-100/GFAP interaction: identification of a putative S-100 target epitope within the head domain of GFAP

机译:S-100(a和p)结合肽(TRTK-12)阻断S-100 / GFAP相互作用:鉴定GFAP头部结构域中假定的S-100目标表位

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摘要

Alignment of previously characterized S-100 (a and |3)-binding peptides (J. Biol. Chem. 270, 14651-14658) has enabled the identification of a putative S-100 target epitope within the head domain of glial fibrillary acidic protein (GFAP). The capacity of a known peptide inhibitor of S-100 protein (TRTK-12), homologous to this region, to perturb the interaction of S-100 (a and |3) and GFAP 0. Biol. Chem 268, 12669-12674) was investigated. Fluorescence spectrophotometry and chemical cross-linking analyses determined TRTK-12 to disrupt S-100:GFAP interaction in a dose- and Ca2+-dependent manner. TRTK-12 also inhibited S-100's ability to block GFAP assembly and to mediate disassembly of preformed glial filaments. Each of these events was strictly dependent upon the presence of calcium and inhibitory peptide, maximal inhibition occurring at a concentration of TRTK-12 equivalent to the molar amount of S-100 monomer present. Together with our recent report demonstrating TRTK-12 also blocks the interaction of S-100 protein with the actin capping protein, CapZ, these results suggest TRTK-12 functions as a pleiotropic inhibitor of S-100 function. Availability of a functional inhibitor of S-100 will assist the further characterization of S-100 protein function in vitro and in vivo. Moreover, this report provides additional evidence supportive of a role for S-100 as a multi-faceted regulator of cytoskeletal integrity.
机译:先前表征的S-100(a和| 3)结合肽的比对(J. Biol。Chem。270,14651-14658)使得能够在胶质纤维酸性蛋白的头部结构域中鉴定出一个假定的S-100靶表位。 (GFAP)。与该区域同源的已知的S-100蛋白的肽抑制剂(TRTK-12)干扰S-100(a和| 3)与GFAP 0的相互作用的能力。 Chem 268,12669-12674)进行了研究。荧光分光光度法和化学交联分析确定TRTK-12以剂量和Ca2 +依赖性方式破坏S-100:GFAP相互作用。 TRTK-12还抑制了S-100阻止GFAP组装并介导预制神经胶质细丝分解的能力。这些事件中的每一个都严格取决于钙和抑制性肽的存在,最大抑制发生在TRTK-12浓度等于所存在的S-100单体的摩尔量的情况下。连同我们最近的报告一起证明TRTK-12还可阻断S-100蛋白与肌动蛋白封端蛋白CapZ的相互作用,这些结果表明TRTK-12作为S-100功能的多效抑制剂。 S-100功能抑制剂的可用性将有助于进一步表征S-100蛋白的体外和体内功能。此外,该报告提供了其他证据支持S-100作为细胞骨架完整性的多方面调节剂。

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