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通过间接识别机制改变II型限制性内切核酸酶HincII的序列特异性。

Alteration of sequence specificity of the type II restriction endonuclease HincII through an indirect readout mechanism.

作者信息

Joshi Hemant K, Etzkorn Christopher, Chatwell Lorentz, Bitinaite Jurate, Horton Nancy C

机构信息

Department of Biochemistry and Molecular Biophysics, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

J Biol Chem. 2006 Aug 18;281(33):23852-69. doi: 10.1074/jbc.M512339200. Epub 2006 May 4.

Abstract

The functional and structural consequences of a mutation of the DNA intercalating residue of HincII, Q138F, are presented. Modeling has suggested that the DNA intercalation by Gln-138 results in DNA distortions potentially used by HincII in indirect readout of its cognate DNA, GTYRAC (Y = C or T, R = A or G) (Horton, N. C., Dorner, L. F., and Perona, J. J. (2002) Nat. Struct. Biol. 9, 42-47). Kinetic data presented here indicate that the mutation of glutamine 138 to phenylalanine (Q138F) results in a change in sequence specificity at the center two base pairs of the cognate recognition site. We show that the preference of HincII for cutting, but not binding, the three cognate sites differing in the center two base pairs has been altered by the mutation Q138F. Five new crystal structures are presented including Q138F HincII bound to GTTAAC and GTCGAC both with and without Ca2+ as well as the structure of wild type HincII bound to GTTAAC. The Q138F HincII/DNA structures show conformational changes in the protein, bound DNA, and at the protein-DNA interface, consistent with the formation of adaptive complexes. Analysis of these structures and the effect of Ca2+ binding on the protein-DNA interface illuminates the origin of the altered specificity by the mutation Q138F in the HincII enzyme.

摘要

本文展示了HincII的DNA嵌入残基发生Q138F突变后的功能和结构后果。模型表明,Gln - 138介导的DNA嵌入会导致DNA扭曲,这可能是HincII用于间接识别其同源DNA(GTYRAC,Y = C或T,R = A或G)的方式(霍顿,N.C.,多尔纳,L.F.,以及佩罗纳,J.J.(2002年)《自然结构生物学》9卷,42 - 47页)。此处给出的动力学数据表明,谷氨酰胺138突变为苯丙氨酸(Q138F)会导致同源识别位点中间两个碱基对处的序列特异性发生变化。我们发现,Q138F突变改变了HincII对在中间两个碱基对不同的三个同源位点进行切割(而非结合)的偏好。本文给出了五个新的晶体结构,包括结合有和没有Ca2+的GTTAAC和GTCGAC的Q138F HincII结构,以及结合GTTAAC的野生型HincII结构。Q138F HincII/DNA结构显示出蛋白质、结合的DNA以及蛋白质 - DNA界面处的构象变化,这与适应性复合物的形成一致。对这些结构以及Ca2+结合对蛋白质 - DNA界面的影响进行分析,阐明了HincII酶中Q138F突变导致特异性改变的原因。

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