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通过体外翻译和胰蛋白酶肽图谱分析鉴定腺病毒2型早期区域4多肽。

Identification of adenovirus 2 early region 4 polypeptides by in vitro translation and tryptic peptide map analysis.

作者信息

Matsuo T, Hashimoto S, Wold W S, Symington J, Rankin A, Green M

出版信息

J Virol. 1982 Jan;41(1):334-9. doi: 10.1128/JVI.41.1.334-339.1982.

Abstract

The mRNA species encoded by early region 4 (E4) (map position [mp] 91.5 to 99.3) of adenovirus 2 were isolated from the polysomes of infected KB cells and were purified by hybridization to the cloned HindIII-F fragment (mp 89.5 to 97.3) or to EcoRI-C fragment (mp 89.7 to 100). The mRNA's were translated in vitro using [35S]methionine as a labeled precursor in rabbit reticulocyte lysates treated with micrococcal nuclease as well as in wheat germ lysates. Five major (35,000-molecular-weight [35K], 23K, 22K, 21K, 18K) polypeptides were observed when the reticulocyte lysate was used. The 23K, 22K, 21K, and 18K polypeptides were also observed with the wheat germ lysate, as well as a very prominent 11K polypeptide; the 35K polypeptide was not observed. Assignment of these polypeptides to E4 was further established by hybrid arrested translation. Two-dimensional gel electrophoresis of a wheat germ translate resolved five polypeptides ranging from 18K to 23K, the major 11K polypeptide, and polypeptides of 10K and 9K. The in vitro 23K to 18K and 11K polypeptides migrated to approximately the same positions on two-dimensional gels as did seven 26K to 21K polypeptides and an 11K polypeptide synthesized in vivo (Brackmann et al., J. Biol. Chem, 255:6772--6779, 1980). Two-dimensional tryptic peptide maps demonstrated that the 35K, 23K, 22K, 21K, and 18K polypeptides are related. The peptide map of 11K is different from those of the above polypeptides, although 11K may share one tryptic methionine polypeptide with them. These results indicate that E4 encodes a major 11K polypeptide, as well as major 35K, 23K, 22K, 21K, and 18K polypeptides.

摘要

从感染腺病毒2的KB细胞多核糖体中分离出由早期区域4(E4)(图谱位置[mp]91.5至99.3)编码的mRNA种类,并通过与克隆的HindIII - F片段(mp 89.5至97.3)或EcoRI - C片段(mp 89.7至100)杂交进行纯化。这些mRNA在体外使用[35S]甲硫氨酸作为标记前体,在经微球菌核酸酶处理的兔网织红细胞裂解物以及小麦胚芽裂解物中进行翻译。当使用网织红细胞裂解物时,观察到五种主要的(分子量35,000[35K]、23K、22K、21K、18K)多肽。使用小麦胚芽裂解物时也观察到了23K、22K、21K和18K多肽,以及一种非常突出的11K多肽;未观察到35K多肽。通过杂交阻断翻译进一步确定了这些多肽与E4的关系。小麦胚芽翻译产物的二维凝胶电泳解析出五种分子量从18K到23K的多肽、主要的11K多肽以及10K和9K的多肽。体外23K至18K和11K多肽在二维凝胶上迁移到的位置与体内合成的七种26K至21K多肽和一种11K多肽大致相同(Brackmann等人,《生物化学杂志》,255:6772 - 6779,1980)。二维胰蛋白酶肽图表明35K、23K、22K、21K和18K多肽是相关的。11K的肽图与上述多肽的不同,尽管11K可能与它们共享一个胰蛋白酶甲硫氨酸多肽。这些结果表明E4编码一种主要的11K多肽以及主要的35K、23K、22K、21K和18K多肽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/916a/256757/338d48710a40/jvirol00160-0351-a.jpg

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