Fukuda Mitsunori, Yamamoto Akitsugu
Methods Enzymol. 2005;403:469-81. doi: 10.1016/S0076-6879(05)03041-7.
Rabphilin and Noc2 were originally described as Rab3A effector proteins involved in the regulation of secretory vesicle exocytosis in neurons and certain endocrine cells. Both proteins share the conserved N-terminal Rab-binding domain (RBD) that consists of two alpha-helical regions separated by two zinc finger motifs. However, the RBD of rabphilin and Noc2 has been shown to bind Rab27A (the closest homologue of Rab3 isoforms) in preference to Rab3A, both in vitro and in vivo. Rabphilin and Noc2 are recruited to dense-core vesicles (DCVs) in neuroendocrine PC12 cells and regulate their exocytosis through interaction with Rab27A rather than with Rab3A. Rab3A-binding-defective mutants of rabphilin(E50A) and Noc2(E51A) retain the ability to target DCVs in PC12 cells, the same as the wild-type proteins, whereas Rab27A-binding-defective mutants of rabphilin(E50A/I54A) and Noc2(E51A/I55A) do not (i.e., they are present throughout the cytoplasm). Expression of the wild-type or the E50A mutant of rabphilin-RBD, but not the E50A/I54A mutant of rabphilin-RBD, in PC12 cells significantly attenuated DCV exocytosis monitored by high-KCl-stimulated neuropeptide Y secretion. In this chapter we describe various assay methods that have been used to characterize the RBD of rabphilin and Noc2 as "RBD27 (Rab-binding domain for Rab27)."
Rabphilin和Noc2最初被描述为参与调节神经元和某些内分泌细胞中分泌囊泡胞吐作用的Rab3A效应蛋白。这两种蛋白都具有保守的N端Rab结合结构域(RBD),该结构域由两个α螺旋区域组成,中间被两个锌指基序隔开。然而,在体外和体内实验中均已表明,rabphilin和Noc2的RBD优先结合Rab27A(Rab3亚型的最接近同源物)而非Rab3A。在神经内分泌PC12细胞中,Rabphilin和Noc2被募集到致密核心囊泡(DCV)中,并通过与Rab27A而非Rab3A相互作用来调节其胞吐作用。rabphilin(E50A)和Noc2(E51A)的Rab3A结合缺陷突变体与野生型蛋白一样,保留了靶向PC12细胞中DCV的能力,而rabphilin(E50A/I54A)和Noc2(E51A/I55A)的Rab27A结合缺陷突变体则不能(即它们存在于整个细胞质中)。在PC12细胞中表达rabphilin-RBD的野生型或E50A突变体,但不表达rabphilin-RBD的E50A/I54A突变体,通过高钾刺激的神经肽Y分泌监测到的DCV胞吐作用显著减弱。在本章中,我们描述了各种检测方法,这些方法已被用于将rabphilin和Noc2的RBD表征为“RBD27(Rab27的Rab结合结构域)”。