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钙/钙调素结合蛋白 S100 对微管蛋白聚合促进蛋白的调节。

Regulation of the tubulin polymerization-promoting protein by Ca/S100 proteins.

机构信息

Applied Cell Biology, Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University, Okayama 700-8530, Japan.

Department of Applied Chemistry and Biotechnology, Faculty of Engineering, Okayama University, Okayama 700-8530, Japan.

出版信息

Cell Calcium. 2021 Jun;96:102404. doi: 10.1016/j.ceca.2021.102404. Epub 2021 Mar 27.

Abstract

To elucidate S100 protein-mediated signaling pathways, we attempted to identify novel binding partners for S100A2 by screening protein arrays carrying 19,676 recombinant glutathione S-transferase (GST)-fused human proteins with biotinylated S100A2. Among newly discovered putative S100A2 interactants, including TMLHE, TRH, RPL36, MRPS34, CDR2L, OIP5, and MED29, we identified and characterized the tubulin polymerization-promoting protein (TPPP) as a novel S100A2-binding protein. We confirmed the interaction of TPPP with Ca/S100A2 by multiple independent methods, including the protein array method, S100A2 overlay, and pulldown assay in vitro and in transfected COS-7 cells. Based on the results from the S100A2 overlay assay using various GST-TPPP mutants, the S100A2-binding region was identified in the C-terminal (residues 111-160) of the central core domain of a monomeric form of TPPP that is involved in TPPP dimerization. Chemical cross-linking experiments indicated that S100A2 suppresses dimer formation of His-tagged TPPP in a dose-dependent and a Ca-dependent manner. In addition to S100A2, TPPP dimerization is disrupted by other multiple S100 proteins, including S100A6 and S100B, in a Ca-dependent manner but not by S100A4. This is consistent with the fact that S100A6 and S100B, but not S100A4, are capable of interacting with GST-TPPP in the presence of Ca. Considering these results together, TPPP was identified as a novel target for S100A2, and it is a potential binding target for other multiple S100 proteins, including S100A6 and S100B. Direct binding of the S100 proteins with TPPP may cause disassembly of TPPP dimer formation in response to the increasing concentration of intracellular Ca, thus resulting in the regulation of the physiological function of TPPP, such as microtubule organization.

摘要

为了阐明 S100 蛋白介导的信号通路,我们试图通过筛选携带生物素化 S100A2 的 19676 个重组谷胱甘肽 S-转移酶 (GST) 融合人蛋白的蛋白质阵列,来鉴定 S100A2 的新结合伴侣。在新发现的推定 S100A2 相互作用物中,包括 TMLHE、TRH、RPL36、MRPS34、CDR2L、OIP5 和 MED29,我们鉴定并表征了微管聚合促进蛋白 (TPPP) 为一种新型 S100A2 结合蛋白。我们通过多种独立的方法,包括蛋白质阵列方法、S100A2 覆盖和体外及转染 COS-7 细胞中的下拉测定,证实了 TPPP 与 Ca/S100A2 的相互作用。基于使用各种 GST-TPPP 突变体的 S100A2 覆盖测定的结果,确定了单体形式的 TPPP 中央核心域的 C 端 (残基 111-160) 是 S100A2 的结合区域,该区域参与 TPPP 二聚化。化学交联实验表明,S100A2 以剂量依赖和 Ca 依赖的方式抑制 His 标记的 TPPP 二聚体的形成。除了 S100A2 之外,TPPP 二聚体的形成还被其他多种 S100 蛋白,包括 S100A6 和 S100B,以 Ca 依赖的方式破坏,但 S100A4 则不会。这与 S100A6 和 S100B 但 S100A4 不能在 Ca 存在的情况下与 GST-TPPP 相互作用的事实是一致的。综合考虑这些结果,TPPP 被鉴定为 S100A2 的新型靶标,并且是其他多种 S100 蛋白,包括 S100A6 和 S100B 的潜在结合靶标。S100 蛋白与 TPPP 的直接结合可能导致 TPPP 二聚体形成的解体,以响应细胞内 Ca 浓度的增加,从而导致 TPPP 生理功能的调节,例如微管组织。

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