Adams J M, Houston H, Allen J, Lints T, Harvey R
Walter and Eliza Hall Institute of Medical Research, Royal Melbourne Hospital, Victoria, Australia.
Oncogene. 1992 Apr;7(4):611-8.
The vav proto-oncogene encodes a protein of unknown function that is rendered oncogenic by loss of a short N-terminal domain. A correction reported here to the vav sequence reveals that a central domain of some 230 amino acids is similar to the products of three genes: the human dbl oncogene, now known to encode a GDP-GTP exchange factor for the Ras-like polypeptide CDC42Hs; the CDC24 gene of Saccharomyces cerevisiae, which participates with CDC42Sc in organization of the cytoskeleton for budding; and the human bcr gene, which recombines with the abl oncogene in certain forms of leukemia. Furthermore, the N-terminal portion of Vav (and of CDC24) is similar to that of certain proteins that associate with filamentous structures. These similarities suggest that Vav, and perhaps also Bcr, may function as a GDP-GTP exchange factor for a Ras-like molecule such as CDC42Hs, and that its action may coordinate cytoplasmic architecture with the cell cycle. Reported evidence that the vav proto-oncogene is widely expressed in hematopoietic cells but not other cell types is extended here by detection of vav mRNA in 49 of 50 murine hematopoietic cell lines representing diverse hematopoietic lineages, and by in situ hybridization in embryos showing expression confined to the only hematopoietic tissue, fetal liver. Thus, like Dbl in other cell types, Vav may function throughout the hematopoietic compartment to govern a Ras-like signal transduction pathway.
vav原癌基因编码一种功能未知的蛋白质,该蛋白质因N端短结构域的缺失而具有致癌性。本文报道的vav序列校正结果显示,其约230个氨基酸的中央结构域与三个基因的产物相似:人类dbl原癌基因,现已知道它编码一种针对类Ras多肽CDC42Hs的GDP-GTP交换因子;酿酒酵母的CDC24基因,它与CDC42Sc共同参与出芽过程中细胞骨架的组织;以及人类bcr基因,它在某些形式的白血病中与abl原癌基因发生重组。此外,Vav(以及CDC24)的N端部分与某些与丝状结构相关的蛋白质的N端部分相似。这些相似性表明,Vav,或许还有Bcr,可能作为一种针对类Ras分子(如CDC42Hs)的GDP-GTP交换因子发挥作用,并且其作用可能使细胞质结构与细胞周期相互协调。已报道的vav原癌基因在造血细胞中广泛表达而在其他细胞类型中不表达的证据,在此通过检测代表不同造血谱系的50个小鼠造血细胞系中的49个中的vav mRNA以及通过胚胎原位杂交显示表达局限于唯一的造血组织——胎儿肝脏而得到扩展。因此,与其他细胞类型中的Dbl一样,Vav可能在整个造血区室发挥作用以调控一条类Ras信号转导途径。