Wang Li, Li Gang, Sugita Shuzo
Division of Cellular and Molecular Biology, Toronto Western Research Institute, University Health Network, Department of Physiology, University of Toronto, 399 Bathurst Street, Toronto, Ontario M5T 2S8, Canada.
J Biol Chem. 2004 May 7;279(19):19875-81. doi: 10.1074/jbc.M400522200. Epub 2004 Feb 20.
Many secretory cells utilize a GTP-dependent pathway, in addition to the well characterized Ca2+-dependent pathway, to trigger exocytotic secretion. However, little is currently known about the mechanism by which this may occur. Here we show the key signaling pathway that mediates GTP-dependent exocytosis. Incubation of permeabilized PC12 cells with soluble RalA GTPase, but not RhoA or Rab3A GTPases, strongly inhibited GTP-dependent exocytosis. A Ral-binding fragment from Sec5, a component of the exocyst complex, showed a similar inhibition. Point mutations in both RalA (RalA(E38R)) and the Sec5 (Sec5(T11A)) fragment, which abolish RalA-Sec5 interaction also abolished the inhibition of GTP-dependent exocytosis. Moreover, transfection with wild-type RalA, but not RalA(E38R), enhanced GTP-dependent exocytosis. In contrast the RalA and the Sec5 fragment showed no inhibition of Ca2+-dependent exocytosis, but cleavage of a SNARE (soluble N-ethylmaleimide-sensitive factor attachment protein receptor) protein by Botulinum neurotoxin blocked both GTP- and Ca2+-dependent exocytosis. Our results indicate that the interaction between RalA and the exocyst complex (containing Sec5) is essential for GTP-dependent exocytosis. Furthermore, GTP- and Ca2+-dependent exocytosis use different sensors and effectors for triggering exocytosis whereas their final fusion steps are both SNARE-dependent.
除了已被充分表征的钙依赖途径外,许多分泌细胞还利用一种GTP依赖途径来触发胞吐分泌。然而,目前对于这种情况可能发生的机制知之甚少。在此,我们展示了介导GTP依赖胞吐作用的关键信号通路。用可溶性RalA GTP酶(而非RhoA或Rab3A GTP酶)孵育通透化的PC12细胞,强烈抑制了GTP依赖的胞吐作用。来自外排体复合物组分Sec5的Ral结合片段表现出类似的抑制作用。RalA(RalA(E38R))和Sec5片段(Sec5(T11A))中的点突变消除了RalA与Sec5的相互作用,同时也消除了对GTP依赖胞吐作用的抑制。此外,转染野生型RalA而非RalA(E38R)可增强GTP依赖的胞吐作用。相反,RalA和Sec5片段对钙依赖的胞吐作用没有抑制作用,但肉毒杆菌神经毒素切割一种SNARE(可溶性N - 乙基马来酰亚胺敏感因子附着蛋白受体)蛋白可阻断GTP和钙依赖的胞吐作用。我们的结果表明,RalA与外排体复合物(包含Sec5)之间的相互作用对于GTP依赖的胞吐作用至关重要。此外,GTP和钙依赖的胞吐作用使用不同的传感器和效应器来触发胞吐作用,而它们最终的融合步骤均依赖于SNARE。
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