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使用磷酸特异性抗体对rabphilin磷酸化进行表征。

Characterization of rabphilin phosphorylation using phospho-specific antibodies.

作者信息

Lonart G, Südhof T C

机构信息

Center for Basic Neuroscience, Department of Molecular Genetics and Howard Hughes Medical Institute, The University of Texas Southwestern Medical Center, Room NA4.118, Dallas, TX 75390-9111, USA.

出版信息

Neuropharmacology. 2001 Nov;41(6):643-9. doi: 10.1016/s0028-3908(01)00126-5.

Abstract

Rab3A is a GTP-binding protein of synaptic vesicles that regulates neurotransmitter release and cycles on and off synaptic vesicles as a function of exocytosis. Rab3A presumably functions via GTP-dependent interactions with effectors. Two putative rab3A effectors have been described in neurons, rabphilin which is a soluble protein that moves onto and off synaptic vesicles in concert with rab3A, and RIM which is an active zone protein that only binds to rab3A on docked vesicles. Rabphilin is an abundant, evolutionarily conserved protein whose function has remained enigmatic since a knockout of rabphilin does not display the functional deficiencies observed in the rab3A knockout. However, previous studies have shown that rabphilin is phosphorylated by protein kinase A and CaM Kinase II, suggesting that it may have a regulatory role. In the present study, we have examined the site and regulation of rabphilin phosphorylation in living nerve terminals using phospho-specific antibodies raised against phospho-serine234 of rabphilin. With these antibodies, we demonstrate that rabphilin is physiologically phosphorylated on serine234, and that soluble rabphilin which is not bound to rab3A on synaptic vesicles is the primary target. However, different from synapsins which are induced to dissociate from synaptic vesicles by PKA phosphorylation, phosphorylation of rabphilin is not instrumental for dissociating rabphilin from synaptic vesicles. Our data support the notion that dissociated rabphilin is a synaptic phosphoprotein in vivo that may play a role in the regulation of nerve terminal protein-protein interactions.

摘要

Rab3A是一种突触小泡的GTP结合蛋白,它调节神经递质释放,并根据胞吐作用在突触小泡上循环开启和关闭。Rab3A可能通过与效应器的GTP依赖性相互作用发挥功能。在神经元中已描述了两种假定的rab3A效应器,rabphilin是一种可溶性蛋白,它与rab3A协同在突触小泡上移动并离开突触小泡,以及RIM是一种活性区蛋白,它仅在停靠的小泡上与rab3A结合。Rabphilin是一种丰富的、进化上保守的蛋白,自rabphilin基因敲除未显示出在rab3A基因敲除中观察到的功能缺陷以来,其功能一直成谜。然而,先前的研究表明rabphilin被蛋白激酶A和钙调蛋白激酶II磷酸化,这表明它可能具有调节作用。在本研究中,我们使用针对rabphilin磷酸化丝氨酸234产生的磷酸特异性抗体,研究了活神经末梢中rabphilin磷酸化的位点和调节。利用这些抗体,我们证明rabphilin在丝氨酸234上发生生理磷酸化,并且在突触小泡上未与rab3A结合的可溶性rabphilin是主要靶点。然而,与通过PKA磷酸化诱导从突触小泡解离的突触结合蛋白不同,rabphilin的磷酸化对将rabphilin从突触小泡解离并无作用。我们的数据支持这样一种观点,即解离的rabphilin是体内的一种突触磷蛋白,可能在神经末梢蛋白质-蛋白质相互作用的调节中发挥作用。

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