Cavenagh M M, Breiner M, Schurmann A, Rosenwald A G, Terui T, Zhang C, Randazzo P A, Adams M, Joost H G, Kahn R A
Laboratory of Biological Chemistry, NCI, National Institutes of Health, Bethesda, Maryland 20892.
J Biol Chem. 1994 Jul 22;269(29):18937-42.
The human and rat homologues of a new member of the ADP-ribosylation factor (ARF) family of 21-kDa GTP-binding proteins, termed Arl3, were identified as an expressed sequence tag (human) and as a product of polymerase chain reaction amplification using degenerate probes derived from conserved sequences in members of the ARF family (rat). Alignments of the full-length open reading frames of the human and rat homologues revealed the encoded proteins to be over 97% identical to each other and 43% identical to human ARF1. Northern blots of mRNA from seven human tissues and four rat tissues revealed the presence of a ubiquitous band of about 1 kilobase in length that hybridized with the corresponding Arl3 probes. A number of human tumor cell lines expressed Arl3, as determined by immunoblotting with an Arl-specific antibody, raised against a peptide derived from the human Arl3 sequence. The level of Arl3 expressed in these cell lines was on the order of 0.01% of total cell protein. Purified recombinant human Arl3 was shown to bind guanine nucleotides but lacks ARF activity and intrinsic or ARF GTPase-activating protein-stimulated GTPase activity. In contrast to ARF proteins, the Arl3 protein has reduced dependence on phospholipids and magnesium for guanine nucleotide exchange. Thus, Arl3 is a ubiquitously expressed GTP-binding protein in the ARF family with distinctive biochemical properties consistent with its having unique, but unknown, role(s) in cell physiology.
21 kDa GTP结合蛋白ADP核糖基化因子(ARF)家族的一个新成员,被命名为Arl3,其人类和大鼠同源物分别作为一个表达序列标签(人类)以及使用源自ARF家族成员保守序列的简并探针通过聚合酶链反应扩增得到的产物(大鼠)而被鉴定出来。人类和大鼠同源物全长开放阅读框的比对显示,编码的蛋白质彼此间的同一性超过97%,与人类ARF1的同一性为43%。对来自七种人类组织和四种大鼠组织的mRNA进行的Northern印迹分析显示,存在一条长度约为1千碱基的普遍存在的条带,它能与相应的Arl3探针杂交。通过用针对源自人类Arl3序列的肽段产生的Arl特异性抗体进行免疫印迹测定,发现许多人类肿瘤细胞系表达Arl3。这些细胞系中表达的Arl3水平约占总细胞蛋白的0.01%。纯化的重组人类Arl3显示能结合鸟嘌呤核苷酸,但缺乏ARF活性以及内在的或ARF GTP酶激活蛋白刺激的GTP酶活性。与ARF蛋白不同,Arl3蛋白在鸟嘌呤核苷酸交换方面对磷脂和镁的依赖性降低。因此,Arl3是ARF家族中一种普遍表达的GTP结合蛋白,具有独特的生化特性,这与其在细胞生理学中具有独特但未知的作用相一致。