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Chemical and enzymatic probing of effector-mediated changes in the conformation of a maxizyme

机译:化学和酶促探索效应酶介导的最大酶构象变化

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The protein encoded by chimeric BCR-ABL mRNA causes chronic myelogenous leukemia (CML). We showed previously that a novel allosterically controllable ribozyme, of the type known as a maxizyme, can cleave this mRNA, with high specificity and high-level activity in vivo. We designed the maxizyme in such a way that it was able to form an active core with which to capture the catalytically indispensable Mg2+ ions only in the presence of the BCR-ABL mRNA junction. In order to probe the putative conformational changes, we used a weakly alkaline solution (pH 9.2) in the presence of 25 mM Mg2+ ions to hydrolyze differentially phosphodiester bonds that were located in different environments. Phosphodiester bonds in single-stranded regions were clearly more susceptible to attack by alkali than those within a double-stranded helix. As indicated by earlier data obtained in vivo, our results demonstrated that the active conformation was achieved only in the presence of the junction within the chimeric BCR-ABL mRNA. Moreover, we demonstrated that the use of mild alkaline solutions to probe RNA structures is very informative. (C) 2000 Elsevier Science Inc. All rights reserved. [References: 42]
机译:嵌合BCR-ABL mRNA编码的蛋白质会引起慢性粒细胞性白血病(CML)。我们以前表明,一种新型的变构可控核酶,称为最大酶,可以在体内具有高特异性和高水平活性的情况下切割此mRNA。我们设计了最大酶,使其能够形成一个活性核,仅在BCR-ABL mRNA连接存在的情况下,该活性核才能捕获催化必不可少的Mg2 +离子。为了探测假定的构象变化,我们在存在25 mM Mg2 +离子的情况下使用弱碱性溶液(pH 9.2)水解位于不同环境中的差异磷酸二酯键。单链区域中的磷酸二酯键显然比双链螺旋中的磷酸二酯键更容易受到碱的攻击。如从体内获得的较早数据所表明的,我们的结果表明,仅在嵌合BCR-ABL mRNA中存在连接的情况下才能实现活性构象。此外,我们证明了使用温和的碱性溶液探测RNA结构非常有用。 (C)2000 Elsevier Science Inc.保留所有权利。 [参考:42]

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