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使用连接的Fe(II)对核糖体蛋白S13的rRNA邻域进行定向羟基自由基探测。

Directed hydroxyl radical probing of the rRNA neighborhood of ribosomal protein S13 using tethered Fe(II).

作者信息

Heilek G M, Noller H F

机构信息

Center for the Molecular Biology of RNA, Sinsheimer Laboratories, University of California, Santa Cruz 95064, USA.

出版信息

RNA. 1996 Jun;2(6):597-602.

Abstract

Directed hydroxyl radical probing was used to probe the rRNA neighborhood around protein S13 in the 30S ribosomal subunit. The unique cysteine at position 84 of S13 served as a tethering site for attachment of Fe(II)-1-(p-bromoacetamidobenzyl)-EDTA. Derivatized S13 (Fe-C84-S13) was then assembled into 30S ribosomal subunits by in vitro reconstitution with 16S rRNA and a mixture of the remaining 30S subunit proteins. Hydroxyl radicals generated from the tethered Fe(II) resulted in cleavage of the RNA backbone in two localized regions of the 3' major domain of 16S rRNA. One region spans nt 1308-1333 and is close to a site previously crosslinked to S13. A second set of cleavages is found in the 950/1230 helix. Both regions have been implicated in binding of S13 by previous chemical footprinting studies using base-specific chemical probes and solution-based hydroxyl radical probing. These results place both regions of 16S rRNA in proximity to position C84 of S13 in the three-dimensional structure of the 30S ribosomal subunit.

摘要

采用定向羟基自由基探测法对30S核糖体亚基中蛋白质S13周围的rRNA邻域进行探测。S13第84位独特的半胱氨酸作为连接位点,用于连接Fe(II)-1-(对溴乙酰氨基苄基)-EDTA。然后通过与16S rRNA和其余30S亚基蛋白质混合物进行体外重组,将衍生化的S13(Fe-C84-S13)组装到30S核糖体亚基中。由连接的Fe(II)产生的羟基自由基导致16S rRNA 3'主要结构域的两个局部区域的RNA主链断裂。一个区域跨越核苷酸1308 - 1333,且靠近先前与S13交联的位点。在950/1230螺旋中发现了第二组切割位点。通过先前使用碱基特异性化学探针的化学足迹研究和基于溶液的羟基自由基探测,这两个区域均与S13的结合有关。这些结果表明,在30S核糖体亚基的三维结构中,16S rRNA的这两个区域都靠近S13的C84位。

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