Wolff L, Scolnick E, Ruscetti S
Proc Natl Acad Sci U S A. 1983 Aug;80(15):4718-22. doi: 10.1073/pnas.80.15.4718.
A nucleotide sequence was determined for the envelope (env) gene of the polycythemia-inducing strain of the acute leukemia-inducing Friend spleen focus-forming virus (SFFV) and from this the amino acid sequence of its gene product, gp52, was deduced. All major elements of the gene were found to be related to genes of other retroviruses that code for functional glycoproteins. Although the carboxyl terminus of gp52 is encoded by sequences highly related to sequences in its putative parent, ecotropic Friend murine leukemia virus, the majority of the protein (69%), including the amino terminus, is encoded by dualtropic virus-like sequences. Nucleotide sequence comparisons suggest that the nonecotropic region may be more closely related to the 5' substitution in dualtropic mink cell focus-inducing viruses that it is to the 5' end of xenotropic virus env genes. A large deletion and two unique insertions have been located in the env gene of polycythemia-inducing SFFV and may account for some of the unusual structural characteristics, aberrant processing, and pathogenic properties of gp52. As a consequence of the deletion, amino-terminal gp70 and carboxyl-terminal p15E-encoding sequences are juxtaposed and it appears that translation from the p15E region, 3' to the deletion, continues in the standard reading frame used by other retroviruses. Insertions of six base pairs and one base pair at the very 3' end of the gp52-encoding region results in a SFFV-unique amino acid sequence and a premature termination codon.
测定了诱导急性白血病的弗氏脾脏病灶形成病毒(SFFV)的红细胞增多症诱导株包膜(env)基因的核苷酸序列,并由此推导了其基因产物gp52的氨基酸序列。发现该基因的所有主要元件都与其他编码功能性糖蛋白的逆转录病毒的基因相关。尽管gp52的羧基末端由与其推定亲本嗜亲性弗氏鼠白血病病毒序列高度相关的序列编码,但该蛋白的大部分(69%),包括氨基末端,由双嗜性病毒样序列编码。核苷酸序列比较表明,非嗜亲性区域可能与双嗜性貂细胞病灶诱导病毒中的5'替代区关系更密切,而与嗜异性病毒env基因的5'末端关系较远。在诱导红细胞增多症的SFFV的env基因中发现了一个大的缺失和两个独特的插入,这可能解释了gp52的一些异常结构特征、异常加工和致病特性。由于该缺失,氨基末端的gp70和羧基末端的p15E编码序列并列,并且似乎从缺失区3'端的p15E区域开始的翻译在其他逆转录病毒使用的标准阅读框中继续。在gp52编码区的3'末端非常末端插入六个碱基对和一个碱基对,导致了SFFV独特的氨基酸序列和一个提前终止密码子。