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异源生物金属离子对转录因子IIIA与DNA相互作用的抑制作用。

Inhibition of transcription factor IIIA-DNA interactions by xenobiotic metal ions.

作者信息

Hanas J S, Gunn C G

机构信息

Department of Biochemistry and Molecular Biology, University of Oklahoma College of Medicine, Oklahoma City 73190, USA.

出版信息

Nucleic Acids Res. 1996 Mar 1;24(5):924-30. doi: 10.1093/nar/24.5.924.

Abstract

Transcription factor IIIA (TFIIIA), a cysteine-rich regulatory protein, is the prototype for the largest known superfamily of eukaryotic transcription factors. Members of the TFIIIA superfamily contain Cys2His2 zinc finger domains responsible for nucleic acid binding. Xenobiotic metal ions, which lack known biological function, were previously used as probes for the structure and function of steroid hormone receptors which contain Cys2Cys2 zinc finger domains. Structural alterations in cysteine-rich regulatory proteins by such ions in vivo might potentiate carcinogenesis and other disease processes. In the present study cadmium and other xenobiotic metal ions were used to probe the structure and function of TFIIIA. The specific interaction of TFIIIA with the internal control region (ICR) of the 5S RNA gene, as assayed by DNase I protection, was inhibited by Cd2+ ion concentrations of > or = 0.1 microM. Aluminum ions were also found to inhibit the TFIIIA-5S RNA gene interaction, albeit at higher concentrations (> or = 5 microM). Inhibition by either metal ion was not readily reversible. Other xenobiotic metal ions, such as mercury or cesium, were not found to be inhibitory under these conditions. None of these ions at the concentrations used in this study affected the ability of DNase I to digest DNA or restriction enzymes to specifically cleave DNA. Preincubation of TFIIIA bound to 5S RNA with either Cd2+ or Al3+ resulted in subsequent DNA binding upon dilution and RNA removal, whereas preincubation of free TFIIIA with the metal ions resulted in inhibition of subsequent DNA binding. Because 5S rRNA also binds the TFIIIA zinc finger domains, these results indicate that the 5S RNA bound to TFIIIA protects the protein from metal inhibition and implicates the zinc fingers in the inhibition mechanism. The nature of the footprint inhibition indicates that the N-terminal fingers of TFIIIA are affected by the metal ions. Cd2+ and Al3+ ions also inhibited the ability of TFIIIA to bind complementary single-stranded DNA and promote renaturation, as measured by Tris-phosphate agarose gel electrophoresis. This gel assay is sensitive to DNA conformation and Al3+ ions were found to alter the conformation of single- and double-stranded DNA in this assay. The inhibition of TFIIIA function in vitro by xenobiotic metals offers new insights into the structure and function of TFIIIA and TFIIIA-type zinc finger proteins. Inhibition by Cd2+ occurs at much lower concentrations than previously observed with steroid hormone receptors and suggests that Cys2His2 zinc finger proteins may be especially sensitive to such agents in vivo.

摘要

转录因子IIIA(TFIIIA)是一种富含半胱氨酸的调节蛋白,是已知最大的真核转录因子超家族的原型。TFIIIA超家族成员包含负责核酸结合的Cys2His2锌指结构域。缺乏已知生物学功能的外源性金属离子以前被用作含有Cys2Cys2锌指结构域的类固醇激素受体结构和功能的探针。体内此类离子对富含半胱氨酸的调节蛋白的结构改变可能会增强致癌作用和其他疾病进程。在本研究中,镉和其他外源性金属离子被用于探究TFIIIA的结构和功能。通过DNase I保护试验检测,当Cd2+离子浓度≥0.1 microM时,TFIIIA与5S RNA基因内部控制区(ICR)的特异性相互作用受到抑制。铝离子也被发现会抑制TFIIIA与5S RNA基因的相互作用,尽管所需浓度更高(≥5 microM)。两种金属离子的抑制作用都不容易逆转。在这些条件下,未发现其他外源性金属离子如汞或铯具有抑制作用。本研究中使用的这些离子浓度均未影响DNase I消化DNA或限制酶特异性切割DNA的能力。与5S RNA结合的TFIIIA与Cd2+或Al3+预孵育后,在稀释并去除RNA后会导致后续的DNA结合,而游离的TFIIIA与金属离子预孵育则会抑制后续的DNA结合。由于5S rRNA也结合TFIIIA锌指结构域,这些结果表明与TFIIIA结合的5S RNA可保护该蛋白免受金属抑制,并表明锌指参与了抑制机制。足迹抑制的性质表明TFIIIA的N端锌指受金属离子影响。通过磷酸三酯琼脂糖凝胶电泳检测,Cd2+和Al3+离子还抑制了TFIIIA结合互补单链DNA并促进复性的能力。这种凝胶试验对DNA构象敏感,并且发现Al3+离子会改变该试验中单链和双链DNA的构象。外源性金属在体外对TFIIIA功能的抑制为TFIIIA和TFIIIA型锌指蛋白的结构和功能提供了新的见解。Cd2+的抑制作用发生的浓度比先前在类固醇激素受体中观察到的要低得多,这表明Cys2His2锌指蛋白在体内可能对此类物质特别敏感。

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