Horwitz B H, Burkhardt A L, Schlegel R, DiMaio D
Department of Human Genetics, Yale University School of Medicine, New Haven, Connecticut 06510.
Mol Cell Biol. 1988 Oct;8(10):4071-8. doi: 10.1128/mcb.8.10.4071-4078.1988.
The 44-amino-acid E5 protein of bovine papillomavirus type 1 is the shortest known protein with transforming activity. To identify the specific amino acids required for in vitro focus formation in mouse C127 cells, we used oligonucleotide-directed saturation mutagenesis to construct an extensive collection of mutants with missense mutations in the E5 gene. Characterization of mutants with amino acid substitutions in the hydrophobic middle third of the E5 protein indicated that efficient transformation requires a stretch of hydrophobic amino acids but not a specific amino acid sequence in this portion of the protein. Many amino acids in the carboxyl-terminal third of the protein can also undergo substitution without impairment of focus-forming activity, but the amino acids at seven positions, including two cysteine residues that mediate dimer formation, appear essential for efficient transforming activity. These essential amino acids are the most well conserved among related fibropapillomaviruses. The small size of the E5 protein, its lack of similarity to other transforming proteins, and its ability to tolerate many amino acid substitutions implies that it transforms cells via a novel mechanism.
1型牛乳头瘤病毒的44个氨基酸的E5蛋白是已知具有转化活性的最短蛋白。为了确定在小鼠C127细胞中体外形成集落所需的特定氨基酸,我们使用寡核苷酸定向饱和诱变构建了一个E5基因中含有错义突变的大量突变体文库。对E5蛋白疏水中间三分之一区域进行氨基酸替换的突变体的表征表明,有效的转化需要一段疏水氨基酸,但该蛋白这部分不需要特定的氨基酸序列。该蛋白羧基末端三分之一区域的许多氨基酸也可以进行替换而不损害集落形成活性,但包括介导二聚体形成的两个半胱氨酸残基在内的七个位置的氨基酸似乎对有效的转化活性至关重要。这些必需氨基酸在相关纤维乳头瘤病毒中是最保守的。E5蛋白的小尺寸、它与其他转化蛋白缺乏相似性以及它耐受许多氨基酸替换的能力意味着它通过一种新机制转化细胞。