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由Snapin(一种与SNAP25结合的蛋白质)对VI型腺苷酸环化酶的调控。

Regulation of type VI adenylyl cyclase by Snapin, a SNAP25-binding protein.

作者信息

Chou Jui-Ling, Huang Chuen-Lin, Lai Hsing-Lin, Hung Amos C, Chien Chen-Li, Kao Yu-Ya, Chern Yijuang

机构信息

Institute of Biomedical Sciences, Academia Sinica, Taipei 115, Taiwan.

出版信息

J Biol Chem. 2004 Oct 29;279(44):46271-9. doi: 10.1074/jbc.M407206200. Epub 2004 Aug 19.

Abstract

In the present study, we used the N terminus (amino acids 1 approximately 160) of type VI adenylyl cyclase (ACVI) as bait to screen a mouse brain cDNA library and identified Snapin as a novel ACVI-interacting molecule. Snapin is a binding protein of SNAP25, a component of the SNARE complex. Co-immunoprecipitation analyses confirmed the interaction between Snapin and full-length ACVI. Mutational analysis revealed that the interaction domains of ACVI and Snapin were located within amino acids 1 approximately 86 of ACVI and 33-51 of Snapin, respectively. Co-localization of ACVI and Snapin was observed in primary hippocampal neurons. Moreover, expression of Snapin specifically eliminated protein kinase C (PKC)-mediated suppression of ACVI, but not that of cAMP-dependent protein kinase (PKA) or calcium. Mutation of the potential PKC and PKA phosphorylation sites of Snapin did not affect the ability of Snapin to reverse the PKC inhibitory effect on ACVI. Phosphorylation of Snapin by PKC or PKA therefore might not be crucial for Snapin action on ACVI. In contrast, Snapin(Delta33-51), which harbors an internal deletion of amino acids 33-51 did not affect PKC-mediated inhibition of ACVI, supporting that amino acids 33-51 of Snapin comprises the ACVI-interacting region. Consistently, Snapin exerted no effect on PKC-mediated inhibition of an ACVI mutant (ACVI-DeltaA87), which lacked the Snapin-interacting region (amino acids 1-86). Snapin thus reverses its action via direct interaction with the N terminus of ACVI. Collectively, we demonstrate herein that in addition to its association with the SNARE complex, Snapin also functions as a regulator of an important cAMP synthesis enzyme in the brain.

摘要

在本研究中,我们以VI型腺苷酸环化酶(ACVI)的N端(氨基酸1至约160)为诱饵,筛选小鼠脑cDNA文库,并鉴定出Snapin是一种新型的与ACVI相互作用的分子。Snapin是SNARE复合体组分SNAP25的结合蛋白。免疫共沉淀分析证实了Snapin与全长ACVI之间的相互作用。突变分析显示,ACVI和Snapin的相互作用结构域分别位于ACVI的氨基酸1至约86以及Snapin的33 - 51位氨基酸内。在原代海马神经元中观察到了ACVI和Snapin的共定位。此外,Snapin的表达特异性消除了蛋白激酶C(PKC)介导的对ACVI的抑制作用,但对环磷酸腺苷依赖性蛋白激酶(PKA)或钙介导的抑制作用没有影响。Snapin潜在的PKC和PKA磷酸化位点的突变并不影响Snapin逆转PKC对ACVI抑制作用的能力。因此,PKC或PKA对Snapin的磷酸化可能对Snapin作用于ACVI并不关键。相反,含有33 - 51位氨基酸内部缺失的Snapin(Delta33 - 51)并不影响PKC介导的对ACVI的抑制作用,这支持了Snapin的33 - 51位氨基酸构成了与ACVI相互作用区域。同样,Snapin对缺乏与Snapin相互作用区域(氨基酸1 - 86)的ACVI突变体(ACVI - DeltaA87)的PKC介导的抑制作用没有影响。因此,Snapin通过与ACVI的N端直接相互作用来发挥其作用。总体而言,我们在此证明,除了与SNARE复合体相关联外,Snapin还作为大脑中一种重要的环磷酸腺苷合成酶的调节剂发挥作用。

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