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蛋白质诱导的构象转变对 DNA 的序列识别。

Sequence recognition of DNA by protein-induced conformational transitions.

机构信息

School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, GA 30332-0400, USA.

出版信息

J Mol Biol. 2010 Mar 5;396(4):1145-64. doi: 10.1016/j.jmb.2009.12.050. Epub 2010 Jan 4.

Abstract

The binding of proteins to specific sequences of DNA is an important feature of virtually all DNA transactions. Proteins recognize specific DNA sequences using both direct readout (sensing types and positions of DNA functional groups) and indirect readout (sensing DNA conformation and deformability). Previously we showed that the P22 c2 repressor N-terminal domain (P22R NTD) forces the central non-contacted 5'-ATAT-3' sequence of the DNA operator into the B' state, a state known to affect DNA hydration, rigidity and bending. Usually the B' state, with a narrow minor groove and a spine of hydration, is reserved for A-tract DNA (TpA steps disrupt A-tracts). Here, we have co-crystallized P22R NTD with an operator containing a central 5'-ACGT-3' sequence in the non-contacted region. C.G base pairs have not previously been observed in the B' state and are thought to prevent it. However, P22R NTD induces a narrow minor groove and a spine of hydration to 5'-ACGT-3'. We observe that C.G base pairs have distinctive destabilizing and disordering effects on the spine of hydration. It appears that the reduced stability of the spine results in a higher energy cost for the B to B' transition. The differential effect of DNA sequence on the barrier to this transition allows the protein to sense the non-contacted DNA sequence.

摘要

蛋白质与特定 DNA 序列的结合是几乎所有 DNA 转译的重要特征。蛋白质通过直接读取(感知 DNA 功能基团的类型和位置)和间接读取(感知 DNA 构象和变形性)来识别特定的 DNA 序列。此前我们曾表明,P22 c2 阻遏物 N 端结构域(P22R NTD)迫使 DNA 操纵子的中央非接触 5'-ATAT-3'序列进入 B'状态,这种状态已知会影响 DNA 的水合、刚性和弯曲。通常,B'状态具有狭窄的小沟和水合的脊,保留给 A-链 DNA(TpA 步破坏 A-链)。在这里,我们将含有中央 5'-ACGT-3'序列的非接触区的操纵子与 P22R NTD 共结晶。C.G 碱基对以前未在 B'状态中观察到,并且被认为会阻止其形成。然而,P22R NTD 诱导 5'-ACGT-3'形成狭窄的小沟和水合脊。我们观察到 C.G 碱基对对水合脊具有独特的去稳定和去有序作用。似乎水合脊稳定性降低导致 B 到 B'转变的能量成本增加。该序列对该转变障碍的不同影响使蛋白质能够感知非接触 DNA 序列。

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