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M3毒蕈碱型乙酰胆碱受体对Rac1的激活涉及Rac1和IQGAP1向细胞连接的转位以及含有Rac1、IQGAP1和肌动蛋白的蛋白质复合物组成的变化。

The activation of Rac1 by M3 muscarinic acetylcholine receptors involves the translocation of Rac1 and IQGAP1 to cell junctions and changes in the composition of protein complexes containing Rac1, IQGAP1, and actin.

作者信息

Ruiz-Velasco Rebecca, Lanning Cathy Cole, Williams Carol L

机构信息

Molecular Pharmacology Laboratory, Guthrie Research Institute, One Guthrie Square, Sayre, Pennsylvania 18840, USA.

出版信息

J Biol Chem. 2002 Sep 6;277(36):33081-91. doi: 10.1074/jbc.M202664200. Epub 2002 Jun 17.

Abstract

The abilities of the M(3) muscarinic acetylcholine receptor (mAChR) and Rac1 to regulate similar cellular responses, including cadherin-mediated adhesion, prompted us to investigate Rac1 regulation by M(3) mAChR. We characterized changes in Rac1 induced by stimulating transfected M(3) mAChR in Chinese hamster ovary cells stably expressing hemagglutinin (HA)-tagged wild-type or mutant Rac1. mAChR activation converts endogenous Rac1 to the GTP-bound form in cells expressing HA-Rac1 but not in cells expressing dominant negative HA-Rac1(Asn-17) or constitutively active HA-Rac1(Val-12). The competitive binding of endogenous IQGAP1 by HA-Rac1(Val-12) may diminish the mAChR-mediated activation of endogenous Rac1. HA-Rac1 and HA-Rac1(Val-12), but not HA-Rac1(Asn-17), accumulate with IQGAP1 at cell junctions during mAChR-induced cell-cell compaction. Co-localization studies suggest that Rac1 can accumulate at junctions without IQGAP1, but IQGAP1 cannot accumulate at junctions without Rac1. mAChR activation also induces GTP-independent changes in Rac1 because mAChR activation redistributes HA-Rac1(Asn-17), which does not bind GTP. Actin associates with complexes containing HA-Rac1 or HA-Rac1(Val-12) after prolonged mAChR activation. We also demonstrate that Rac1 participates in mAChR-induced cell-cell compaction and c-Jun phosphorylation. These results indicate that M(3) mAChR activation converts Rac1 to the GTP-bound form, alters interactions between Rac1, IQGAP1, and actin, and causes the junctional accumulation of Rac1 and IQGAP1.

摘要

M(3)毒蕈碱型乙酰胆碱受体(mAChR)与Rac1调节相似细胞反应(包括钙黏蛋白介导的黏附)的能力,促使我们研究M(3) mAChR对Rac1的调节作用。我们对稳定表达血凝素(HA)标记的野生型或突变型Rac1的中国仓鼠卵巢细胞中转染的M(3) mAChR进行刺激,从而对Rac1的变化进行了表征。mAChR激活可使表达HA-Rac1的细胞内源性Rac1转变为GTP结合形式,但在表达显性负性HA-Rac1(Asn-17)或组成型活性HA-Rac1(Val-12)的细胞中则不会。HA-Rac1(Val-12)对内源性IQGAP1的竞争性结合可能会减弱mAChR介导的内源性Rac1激活。在mAChR诱导的细胞间压实过程中,HA-Rac1和HA-Rac1(Val-12)而非HA-Rac1(Asn-17)会与IQGAP1在细胞连接处聚集。共定位研究表明,Rac1可在无IQGAP1的情况下在连接处聚集,但IQGAP1在无Rac1时无法在连接处聚集。mAChR激活还会诱导Rac1发生不依赖GTP的变化,因为mAChR激活会重新分布不结合GTP的HA-Rac1(Asn-17)。长时间的mAChR激活后,肌动蛋白会与含有HA-Rac1或HA-Rac1(Val-12)的复合物结合。我们还证明Rac1参与了mAChR诱导的细胞间压实和c-Jun磷酸化。这些结果表明,M(3) mAChR激活可将Rac1转变为GTP结合形式,改变Rac1、IQGAP1和肌动蛋白之间的相互作用,并导致Rac1和IQGAP1在连接处聚集。

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