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白喉毒素阻遏物通过过渡金属离子激活DNA结合需要形成稳定的同二聚体。

Transition metal ion activation of DNA binding by the diphtheria tox repressor requires the formation of stable homodimers.

作者信息

Tao X, Zeng H Y, Murphy J R

机构信息

Evans Department of Clinical Research, Boston University Medical Center Hospital, MA 02118, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 Jul 18;92(15):6803-7. doi: 10.1073/pnas.92.15.6803.

Abstract

The diphtheria tox repressor (DtxR) is a transition metal ion-dependent regulatory element that controls the expression of diphtheria toxin and several genes involved in the synthesis of siderophores in Corynebacterium diphtheriae. In the presence of transition metal ions apo-DtxR becomes activated and specifically binds to its target DNA sequences. We demonstrate by glutaraldehyde cross-linking that monomeric apo-DtxR is in weak equilibrium with a dimeric form and that upon addition of activating metal ions to the reaction mixture a dimeric complex is stabilized. Addition of the DNA-binding-defective mutant apo-DtxR(delta 1-47) to apo-DtxR in the absence of transition metal ions inhibits conversion of the apo-repressor to its activated DNA-binding form. We also show that the binding of Ni2+ to both apo-DtxR and apo-DtxR(delta 1-47) is cooperative and that upon ion binding there is a conformational change in the environment of the indole ring moiety of Trp-104. For the wild-type repressor the consequences of this conformational change include a shift in equilibrium toward dimer formation and activation of target DNA binding by the repressor. We conclude that the formation of DtxR homodimers is mediated through a protein-protein interaction domain that is also activated on metal ion binding.

摘要

白喉毒素阻遏蛋白(DtxR)是一种依赖过渡金属离子的调控元件,它控制白喉毒素以及几种参与白喉棒状杆菌中铁载体合成的基因的表达。在存在过渡金属离子的情况下,脱辅基DtxR被激活并特异性结合其靶DNA序列。我们通过戊二醛交联证明,单体脱辅基DtxR与二聚体形式处于弱平衡状态,并且在向反应混合物中添加激活金属离子后,二聚体复合物得以稳定。在不存在过渡金属离子的情况下,向脱辅基DtxR中添加DNA结合缺陷型突变体脱辅基DtxR(δ1-47)会抑制脱辅基阻遏蛋白向其活化的DNA结合形式的转化。我们还表明,Ni2+与脱辅基DtxR和脱辅基DtxR(δ1-47)的结合是协同的,并且在离子结合后,Trp-104的吲哚环部分环境会发生构象变化。对于野生型阻遏蛋白,这种构象变化的后果包括平衡向二聚体形成方向移动以及阻遏蛋白对靶DNA结合的激活。我们得出结论,DtxR同型二聚体的形成是通过一个蛋白质-蛋白质相互作用结构域介导的,该结构域在金属离子结合时也会被激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3210/41417/139fc66f8b5d/pnas01491-0160-a.jpg

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