Kahn R A, Volpicelli-Daley L, Bowzard B, Shrivastava-Ranjan P, Li Y, Zhou C, Cunningham L
Department of Biochemistry, Emory University School of Medicine, 1510 Clifton Rd, Atlanta, GA 30322-3050, USA.
Biochem Soc Trans. 2005 Dec;33(Pt 6):1269-72. doi: 10.1042/BST0331269.
Database mining and phylogenetic analysis of the Arf (ADP-ribosylation factor) superfamily revealed the presence in mammals of at least 22 members, including the six Arfs, two Sars and 14 Arl (Arf-like) proteins. At least six Arf family members were found in very early eukaryotes, including orthologues of Arf, Sar, Arl2, Arl3, Arl6 and Arl8. While roles for Arfs in membrane traffic are well known, those for most of the Arls remain unknown. Depletion in cells of the most closely related human Arf proteins, Arf1-Arf5, reveals specificities among their cellular roles and suggests that they may function in pairs at different steps in endocytic and secretory membrane traffic. In addition, recent results from a number of laboratories suggest that several of the Arl proteins may be involved in different aspects of microtubule-dependent functions. Thus, a second major role for Arf family GTPases, that of regulating microtubules, is emerging. Because membrane traffic is often dependent upon movement of vesicles along microtubules this raises the possibility that these two fundamental functions of Arf family members, regulation of vesicle traffic and microtubule dynamics, diverged from one function of Arfs in the earliest cells that has continued to branch and allow additional levels of regulation.
对Arf(ADP核糖基化因子)超家族的数据库挖掘和系统发育分析表明,哺乳动物中至少存在22个成员,包括6个Arf、2个Sar和14个Arl(Arf样)蛋白。在非常早期的真核生物中发现了至少6个Arf家族成员,包括Arf、Sar、Arl2、Arl3、Arl6和Arl8的直系同源物。虽然Arf在膜运输中的作用已广为人知,但大多数Arl的作用仍不清楚。在细胞中耗尽与人类最密切相关的Arf蛋白Arf1 - Arf5,揭示了它们在细胞作用中的特异性,并表明它们可能在胞吞和分泌膜运输的不同步骤中成对发挥作用。此外,一些实验室最近的结果表明,几种Arl蛋白可能参与微管依赖性功能的不同方面。因此,Arf家族GTP酶的第二个主要作用,即调节微管,正在显现。由于膜运输通常依赖于囊泡沿微管的移动,这增加了一种可能性,即Arf家族成员的这两个基本功能,即囊泡运输调节和微管动力学,从最早细胞中Arf的一种功能分化而来,这种功能不断分支并允许额外的调节水平。