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通过缺失分析确定禽逆转录病毒整合酶的核酸结合特性。

Defining nucleic acid-binding properties of avian retrovirus integrase by deletion analysis.

作者信息

Mumm S R, Grandgenett D P

机构信息

Institute for Molecular Virology, St. Louis University Medical Center, Missouri 63110.

出版信息

J Virol. 1991 Mar;65(3):1160-7. doi: 10.1128/JVI.65.3.1160-1167.1991.

Abstract

Integration of retroviral DNA into the host genome requires the activity of retrovirus-encoded integration protein IN. We expressed Rous sarcoma virus (RSV) IN, 286 amino acid residues in length, by using in vitro transcription, followed by in vitro translation in rabbit reticulocyte lysate. The nucleic acid-binding activity of in vitro-translated IN was assessed by using DNA-cellulose affinity chromatography and poly(U)-Sepharose affinity chromatography and by sedimentation analysis in the presence or absence of DNA. In vitro-translated RSV IN exhibited nucleic acid-binding activity similar to that of IN purified from avian myeloblastosis virus. To identify regions of IN which bind to nucleic acids, several deletions of RSV IN were generated. The NH2-terminal 26 amino acids, including the two His residues of a His-Cys box, were not necessary for IN nucleic acid binding with any of the substrates tested. The substrates included native calf thymus DNA, poly(U), and a double-stranded linear DNA molecule with RSV long terminal repeat sequences at its termini. The COOH-terminal region (residues 178 to 286) of IN bound quantitatively (greater than 90%) to poly(U) and to single-stranded circular phi X174 DNA but did not exhibit the double-stranded linear DNA-binding ability of the entire IN molecule.

摘要

逆转录病毒DNA整合到宿主基因组中需要逆转录病毒编码的整合蛋白IN的活性。我们通过体外转录,随后在兔网织红细胞裂解物中进行体外翻译,表达了长度为286个氨基酸残基的劳氏肉瘤病毒(RSV)IN。通过使用DNA-纤维素亲和色谱法和聚(U)-琼脂糖亲和色谱法,以及在有无DNA存在的情况下进行沉降分析,评估体外翻译的IN的核酸结合活性。体外翻译的RSV IN表现出与从禽成髓细胞瘤病毒纯化的IN相似的核酸结合活性。为了鉴定IN中与核酸结合的区域,产生了几个RSV IN的缺失突变体。NH2末端的26个氨基酸,包括His-Cys盒中的两个His残基,对于IN与任何测试底物的核酸结合不是必需的。这些底物包括天然小牛胸腺DNA、聚(U)以及在其末端具有RSV长末端重复序列的双链线性DNA分子。IN的COOH末端区域(第178至286位氨基酸残基)与聚(U)和单链环状φX174 DNA定量结合(大于90%),但不表现出整个IN分子的双链线性DNA结合能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2623/239882/7ddc92c9fc16/jvirol00046-0122-a.jpg

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