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胰蛋白酶处理的小脑肌醇1,4,5-三磷酸受体。裂解的配体结合结构域与通道结构域的结构和功能偶联。

Trypsinized cerebellar inositol 1,4,5-trisphosphate receptor. Structural and functional coupling of cleaved ligand binding and channel domains.

作者信息

Yoshikawa F, Iwasaki H, Michikawa T, Furuichi T, Mikoshiba K

机构信息

Department of Molecular Neurobiology, Institute of Medical Science, University of Tokyo, Minato-ku, Tokyo 108-8639, Japan.

出版信息

J Biol Chem. 1999 Jan 1;274(1):316-27. doi: 10.1074/jbc.274.1.316.

Abstract

The type 1 inositol 1,4,5-trisphosphate receptor (IP3R1) is a tetrameric intracellular inositol 1,4,5-trisphosphate (IP3)-gated Ca2+ release channel (calculated molecular mass = approximately 313 kDa/subunit). We studied structural and functional coupling in this protein complex by limited (controlled) trypsinization of membrane fractions from mouse cerebellum, the predominant site for IP3R1. Mouse IP3R1 (mIP3R1) was trypsinized into five major fragments (I-V) that were positioned on the entire mIP3R1 sequence by immuno-probing with 11 site-specific antibodies and by micro-sequencing of the N termini. Four fragments I-IV were derived from the N-terminal cytoplasmic region where the IP3-binding region extended over two fragments I (40/37 kDa) and II (64 kDa). The C-terminal fragment V (91 kDa) included the membrane-spanning channel region. All five fragments were pelleted by centrifugation as were membrane proteins. Furthermore, after solubilizing with 1% Triton X-100, all were co-immunoprecipitated with the C terminus-specific monoclonal antibody that recognized only the fragment V. These data suggested that the native mIP3R1-channel is an assembly of four subunits, each of which is constituted by non-covalent interactions of five major, well folded structural components I-V that are not susceptible to attack by mild trypsinolysis. Ca2+ release experiments further revealed that even the completely fragmented mIP3R1 retained significant IP3-induced Ca2+ release activity. These data suggest that structural coupling among five split components conducts functional coupling for IP3-induced Ca2+ release, despite the loss of peptide linkages. We propose structural-functional coupling in the mIP3R1, that is neighboring coupling between components I and II for IP3 binding and long-distant coupling between the IP3 binding region and the channel region (component V) beyond trypsinized gaps for ligand gating.

摘要

1型肌醇1,4,5-三磷酸受体(IP3R1)是一种四聚体细胞内肌醇1,4,5-三磷酸(IP3)门控的Ca2+释放通道(计算分子量约为313 kDa/亚基)。我们通过对来自小鼠小脑(IP3R1的主要位点)的膜组分进行有限(可控)胰蛋白酶消化,研究了该蛋白复合物中的结构与功能偶联。小鼠IP3R1(mIP3R1)被胰蛋白酶消化成五个主要片段(I-V),通过用11种位点特异性抗体进行免疫印迹以及对N末端进行微量测序,将这些片段定位在整个mIP3R1序列上。四个片段I-IV源自N末端胞质区域,其中IP3结合区域延伸至两个片段I(40/37 kDa)和II(64 kDa)。C末端片段V(91 kDa)包括跨膜通道区域。所有五个片段与膜蛋白一样通过离心沉淀。此外,在用1% Triton X-100溶解后,所有片段都与仅识别片段V的C末端特异性单克隆抗体进行了共免疫沉淀。这些数据表明,天然的mIP3R1通道是由四个亚基组成的组装体,每个亚基由五个主要的、折叠良好的结构组分I-V通过非共价相互作用构成,这些组分不易受到温和胰蛋白酶消化的攻击。Ca2+释放实验进一步表明,即使是完全碎片化的mIP3R1仍保留显著的IP3诱导的Ca2+释放活性。这些数据表明,五个分裂组分之间的结构偶联介导了IP3诱导的Ca2+释放的功能偶联,尽管肽键已丢失。我们提出mIP3R1中的结构-功能偶联,即组分I和II之间用于IP3结合的邻近偶联以及IP3结合区域与通道区域(组分V)之间跨越胰蛋白酶消化间隙的长距离偶联用于配体门控。

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