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α-拉托毒素通过受体介导的蛋白激酶C激活来调节分泌机制。

Alpha-latrotoxin modulates the secretory machinery via receptor-mediated activation of protein kinase C.

作者信息

Liu Jie, Wan Qunfang, Lin Xianguang, Zhu Hongliang, Volynski Kirill, Ushkaryov Yuri, Xu Tao

机构信息

Institute of Biophysics and Biochemistry, School of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074. P. R. China.

出版信息

Traffic. 2005 Sep;6(9):756-65. doi: 10.1111/j.1600-0854.2005.00313.x.

Abstract

The hypothesis whether alpha-latrotoxin (LTX) could directly regulate the secretory machinery was tested in pancreatic beta cells using combined techniques of membrane capacitance (Cm) measurement and Ca2+ uncaging. Employing ramp increase in [Ca2+]i to stimulate exocytosis, we found that LTX lowers the Ca2+ threshold required for exocytosis without affecting the size of the readily releasable pool (RRP). The burst component of exocytosis in response to step-like [Ca2+]i increase generated by flash photolysis of caged Ca2+ was also speeded up by LTX treatment. LTX increased the maximum rate of exocytosis compared with control responses with similar postflash [Ca2+]i and shifted the Ca2+ dependence of the exocytotic machinery toward lower Ca2+ concentrations. LTXN4C, a LTX mutant which cannot form membrane pores or penetrate through the plasma membrane but has similar affinity for the receptors as the wild-type LTX, mimicked the effect of LTX. Moreover, the effects of both LTX and LTXN4C) were independent of intracellular or extracellular Ca2+ but required extracellular Mg2+. Our data propose that LTX, by binding to the membrane receptors, sensitizes the fusion machinery to Ca2+ and, hence, may permit release at low [Ca2+]i level. This sensitization is mediated by activation of protein kinase C.

摘要

我们运用膜电容(Cm)测量和Ca2+解笼技术相结合的方法,在胰腺β细胞中测试了α-黑寡妇毒素(LTX)是否能直接调节分泌机制这一假设。利用[Ca2+]i的斜坡式增加来刺激胞吐作用,我们发现LTX降低了胞吐作用所需的Ca2+阈值,而不影响易释放池(RRP)的大小。通过笼锁Ca2+的闪光光解产生的阶梯状[Ca2+]i增加所引发的胞吐作用的爆发成分,在LTX处理后也加快了。与具有相似闪光后[Ca2+]i的对照反应相比,LTX增加了胞吐作用的最大速率,并使胞吐机制的Ca2+依赖性向更低的Ca2+浓度偏移。LTXN4C是一种LTX突变体,它不能形成膜孔或穿透质膜,但对受体的亲和力与野生型LTX相似,它模拟了LTX的作用。此外,LTX和LTXN4C的作用均不依赖于细胞内或细胞外的Ca2+,但需要细胞外的Mg2+。我们的数据表明,LTX通过与膜受体结合,使融合机制对Ca2+敏感,因此,可能允许在低[Ca2+]i水平下释放。这种敏感性是由蛋白激酶C的激活介导的。

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