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Impact of base pair identity 5′ to the spliceosomal branch site adenosine on branch site conformation

机译:碱基对身份5对剪接体分支位点腺苷对分支位点构象的影响

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摘要

The branch site helix from Saccharomyces cerevisiae with pseudouridine (ψ) incorporated in a phylogenetically conserved position of U2 snRNA features an extrahelical branch site adenosine (A) that forms a base triple interaction with the minor groove edge of a widely conserved purineU2 strand-pyrimidineintron strand (RU2-Yintron) base pair two positions upstream. In these studies, NMR spectra of a duplex in which 2-aminopurine (2ap), a fluorescent analog of adenine lacking the proposed hydrogen bond donor, was substituted for the branch site A, indicated that the substitution does not alter the extrahelical position of the branch site residue; thus, it appears that a hydrogen bond between the adenine amino group and the R-Y pair is not obligatory for stabilization of the extrahelical conformation. In contrast, reversal of the orientation of AU2-Uintron to UU2-Aintron resulted in an intrahelical position for the branch site A or 2ap. Fluorescence intensity of 2ap substituted for the branch site A with the original RU2-Yintron orientation (AU or GC) was high, consistent with an extrahelical position, whereas fluorescence in helices with the reversed R-Y orientation, or with a mismatched pair (A-U → G•A or U•C), was markedly quenched, implying that the residue was stacked in the helix. The A 5′ to the branch site residue was not extrahelical in any of the duplexes. These findings suggest that the RU2-Yintron base pair orientation in the ψ-dependent branch site helix plays an important role in positioning the branch site A for recognition and/or function.
机译:来自酿酒酵母的分支位点螺旋,在U2 snRNA的系统发育保守位置掺入假尿苷(ψ),具有一个螺旋外分支位点腺苷(A),与广泛保守的嘌呤U2链-嘧啶内含子链的小沟边缘形成碱基三重相互作用(RU2-Yintron)碱基对在上游两个位置。在这些研究中,其中2-氨基嘌呤(2ap)(一种缺乏拟议的氢键供体的腺嘌呤的荧光类似物)取代了支链位点A的双链体的NMR光谱表明,该取代不会改变其螺旋外位置。分支部位残留物;因此,看来腺嘌呤氨基和R-Y对之间的氢键对于稳定螺旋外构象不是必须的。相反,AU2-Uintron向UU2-Aintron的方向反转导致分支位点A或2ap处于螺旋内位置。 2ap取代具有原始RU2-Yintron方向(AU或GC)的分支位点A的荧光强度很高,与螺旋外位置一致,而在RY方向相反或配对不正确的螺旋中的荧光(AU→G •A或U•C)被显着淬灭,表明残留物堆积在螺旋中。在任何双链体中,分支位点残基的A 5'都不在螺旋外。这些发现表明,在ψ依赖性分支位点螺旋中的RU2-Yintron碱基对取向在定位分支位点A以进行识别和/或功能中起重要作用。

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