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钙调蛋白结合蛋白 Orai1 钙调蛋白结合域的晶体结构与 Ca2+-钙调蛋白复合物呈现独特的结合模式。

Crystal structure of calmodulin binding domain of orai1 in complex with Ca2+ calmodulin displays a unique binding mode.

机构信息

Laboratory of Neurobiology, NIEHS, National Institutes of Health, Research Triangle Park, North Carolina 27709, USA.

出版信息

J Biol Chem. 2012 Dec 14;287(51):43030-41. doi: 10.1074/jbc.M112.380964. Epub 2012 Oct 29.

Abstract

Orai1 is a plasma membrane protein that in its tetrameric form is responsible for calcium influx from the extracellular environment into the cytosol in response to interaction with the Ca(2+)-depletion sensor STIM1. This is followed by a fast Ca(2+)·calmodulin (CaM)-dependent inhibition, resulting from CaM binding to an Orai1 region called the calmodulin binding domain (CMBD). The interaction between Orai1 and CaM at the atomic level remains unknown. Here, we report the crystal structure of a CaM·Orai1-CMBD complex showing one CMBD bound to the C-terminal lobe of CaM, differing from other CaM-target protein complexes, in which both N- and C-terminal lobes of CaM (CaM-N and CaM-C) are involved in target binding. Orai1-CMBD binds CaM-C mainly through hydrophobic interactions, primarily involving residue Trp(76) of Orai1-CMBD, which interacts with the hydrophobic pocket of CaM-C. However, NMR data, isothermal titration calorimetry data, and pulldown assays indicated that CaM-N and CaM-C both can bind Orai1-CMBD, with CaM-N having ∼4 times weaker affinity than CaM-C. Pulldown assays of a Orai1-CMBD(W76E) mutant, gel filtration chromatography data, and NOE signals indicated that CaM-N and CaM-C can each bind one Orai1-CMBD. Thus our studies support an unusual, extended 1:2 binding mode of CaM to Orai1-CMBDs, and quantify the affinity of Orai1 for CaM. We propose a two-step mechanism for CaM-dependent Orai1 inactivation initiated by binding of the C-lobe of CaM to the CMBD of one Orai1 followed by the binding of the N-lobe of CaM to the CMBD of a neighboring Orai1.

摘要

Orai1 是一种质膜蛋白,以四聚体的形式存在,负责在与 Ca(2+)耗竭传感器 STIM1 相互作用后,将细胞外环境中的 Ca2+内流到细胞质中。这之后是一个快速的 Ca(2+)·钙调蛋白(CaM)依赖性抑制,这是由于 CaM 与 Orai1 的一个称为钙调蛋白结合结构域(CMBD)的区域结合所致。Orai1 和 CaM 之间的原子水平相互作用仍然未知。在这里,我们报告了一个 CaM·Orai1-CMBD 复合物的晶体结构,显示一个 CMBD 与 CaM 的 C 端结构域结合,与其他 CaM 靶向蛋白复合物不同,在这些复合物中,CaM 的 N 端和 C 端结构域(CaM-N 和 CaM-C)都参与了靶标结合。Orai1-CMBD 主要通过疏水相互作用与 CaM-C 结合,主要涉及 Orai1-CMBD 的色氨酸(Trp)残基 76,与 CaM-C 的疏水口袋相互作用。然而,NMR 数据、等温滴定量热法数据和拉下实验表明,CaM-N 和 CaM-C 都可以与 Orai1-CMBD 结合,CaM-N 的亲和力比 CaM-C 弱约 4 倍。Orai1-CMBD(W76E)突变体的拉下实验、凝胶过滤色谱数据和 NOE 信号表明,CaM-N 和 CaM-C 可以分别结合一个 Orai1-CMBD。因此,我们的研究支持 CaM 与 Orai1-CMBD 之间异常的、扩展的 1:2 结合模式,并定量了 Orai1 与 CaM 的亲和力。我们提出了一个 CaM 依赖性 Orai1 失活的两步机制,该机制由 CaM 的 C 端结构域与一个 Orai1 的 CMBD 结合起始,然后是 CaM 的 N 端结构域与相邻 Orai1 的 CMBD 结合。

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