Zeuzem S, Zimmermann P, Schulz I
Max-Planck-Institut für Biophysik, Frankfurt am Main, Germany.
J Membr Biol. 1992 Feb;125(3):231-41. doi: 10.1007/BF00236436.
Evidence suggests that certain ras-related small molecular weight GTP-binding proteins (smg-proteins) are involved in intracellular membrane trafficking and vesicle fusion. We have previously shown that intravesicular acidification due to a vacuolar-type H(+)-ATPase, which is Cl- dependent and highly sensitive to the specific inhibitor bafilomycin, enhances GTP-induced fusion of pancreatic microsomal vesicles (Hampe, W., Zimmermann, P., Schulz, I. 1990. FEBS Lett. 271:62-66). This process may involve function of smg-proteins. The present study shows that MgATP (2 mM), but neither MgATP gamma S nor ATP in the absence of Mg2+, increases association of 19- and 21-kDa smg-proteins to the vesicle membrane as monitored by their [ alpha-32P]GTP binding. The affinity of smg-proteins for [ alpha-32P]GTP was not altered by MgATP. Bafilomycin B1 (10(-8) M), the protonophore CCCP (10(-5) M), and replacement of Cl- in the incubation buffer by CH3COO- or NO3- resulted in an almost complete inhibition of the MgATP-dependent association of the 19- and 21-kDa smg-proteins to the vesicle membranes. Furthermore, the MgATP effect on both smg-proteins was found to be due to the intravesicular pH and not to the H+ gradient over the vesicle membrane. We conclude that association of a 19-kDa (immunologically identified as the ADP-ribosylation factor, arf) and a yet unidentified 21-kDa GTP-binding protein to vesicle membranes is regulated by the intravesicular pH established by a vacuolar-type H(+)-ATPase.
有证据表明,某些与ras相关的小分子量GTP结合蛋白(小G蛋白)参与细胞内膜运输和囊泡融合。我们先前已经表明,液泡型H(+)-ATPase引起的囊泡内酸化,该过程依赖Cl-且对特异性抑制剂巴弗洛霉素高度敏感,可增强GTP诱导的胰腺微粒体囊泡融合(Hampe, W., Zimmermann, P., Schulz, I. 1990. FEBS Lett. 271:62 - 66)。这个过程可能涉及小G蛋白的功能。本研究表明,MgATP(2 mM),但不是MgATPγS或无Mg2+时的ATP,可增加19 kDa和21 kDa小G蛋白与囊泡膜的结合,这通过它们的[α-32P]GTP结合来监测。MgATP不会改变小G蛋白对[α-32P]GTP的亲和力。巴弗洛霉素B1(10(-8) M)、质子载体CCCP(10(-5) M)以及用CH3COO-或NO3-替代孵育缓冲液中的Cl-,几乎完全抑制了19 kDa和21 kDa小G蛋白与囊泡膜的MgATP依赖性结合。此外,发现MgATP对这两种小G蛋白的作用是由于囊泡内pH值,而不是由于囊泡膜上的H+梯度。我们得出结论,19 kDa(免疫鉴定为ADP核糖基化因子,arf)和一个尚未鉴定的21 kDa GTP结合蛋白与囊泡膜的结合受液泡型H(+)-ATPase建立的囊泡内pH值调节。