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2 微米环状位点特异性重组酶对底物的识别:最小底物对称元件内突变的影响

Substrate recognition by the 2 micron circle site-specific recombinase: effect of mutations within the symmetry elements of the minimal substrate.

作者信息

Prasad P V, Horensky D, Young L J, Jayaram M

出版信息

Mol Cell Biol. 1986 Dec;6(12):4329-34. doi: 10.1128/mcb.6.12.4329-4334.1986.

Abstract

The minimal substrate for the 2 microns circle site-specific recombinase FLP consists of a nearly perfect 13-base-pair dyad symmetry with an 8-base-pair core. By using a series of chemically synthesized FLP substrates in in vitro FLP recombination and FLP-binding assays, we have identified four positions within each of the symmetry elements that are important contact points for the FLP protein. Furthermore, the binding and recombination data provide evidence for cooperativity between the two symmetry elements of a substrate and between the symmetry elements of two partner substrates during FLP recombination.

摘要

2 微米环状位点特异性重组酶 FLP 的最小底物由一个带有 8 个碱基对核心的近乎完美的 13 个碱基对二元对称结构组成。通过在体外 FLP 重组和 FLP 结合试验中使用一系列化学合成的 FLP 底物,我们在每个对称元件内确定了四个位置,这些位置是 FLP 蛋白重要的接触点。此外,结合和重组数据为底物的两个对称元件之间以及 FLP 重组过程中两个伙伴底物的对称元件之间的协同作用提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0084/367214/d6fa5743f9fe/molcellb00096-0197-a.jpg

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