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利用圆二色光谱和核磁共振光谱对代表病毒衣壳蛋白RNA结合N端的肽片段进行构象研究。

Conformational studies on a peptide fragment representing the RNA-binding N-terminus of a viral coat protein using circular dichroism and NMR spectroscopy.

作者信息

van der Graaf M, Hemminga M A

机构信息

Agricultural University, Department of Molecular Physics, Wageningen, The Netherlands.

出版信息

Eur J Biochem. 1991 Oct 15;201(2):489-94. doi: 10.1111/j.1432-1033.1991.tb16307.x.

Abstract

Conformational studies were performed on a synthetic pentacosapeptide representing the RNA-binding N-terminal region of the coat protein of cowpea chlorotic mottle virus. The effects of ionic strength, addition of (oligo)phosphates and temperature on the conformation of this highly positively charged peptide containing six arginines and three lysines were studied. CD experiments show that the peptide has 15-18% alpha-helical conformation and about 80% random-coil conformation in the absence of inorganic salt at 25 degrees C, and 20-21% alpha-helical conformation under the same conditions at 10 degrees C. Addition of inorganic salts results in an increase of alpha-helix content, up to 42% in the presence of oligophosphate with an average chain length of 18 phosphates, which was used as an RNA analog. NMR experiments show that the alpha-helix formation starts in the region between Thr9 and Gln12, and is extended in the direction of the C terminus. Relaxation measurements show that binding to oligophosphates of increasing length results in reduced internal mobilities of the positively charged side chains of the arginyl and lysyl residues and of the side chain of Thr9 in the alpha-helical region. The alpha-helix formation in the N-terminal part of this viral coat protein upon binding of phosphate groups to the positively charged side chains is suggested to play an essential role in RNA binding.

摘要

对一种合成的二十五肽进行了构象研究,该肽代表豇豆花叶病毒外壳蛋白的RNA结合N端区域。研究了离子强度、添加(寡)磷酸盐和温度对这种含有六个精氨酸和三个赖氨酸的高度带正电荷肽构象的影响。圆二色性实验表明,在25℃无无机盐条件下,该肽具有15%-18%的α-螺旋构象和约80%的无规卷曲构象;在10℃相同条件下,α-螺旋构象为20%-21%。添加无机盐会导致α-螺旋含量增加,在存在平均链长为18个磷酸的寡磷酸盐(用作RNA类似物)时,α-螺旋含量高达42%。核磁共振实验表明,α-螺旋形成始于苏氨酸9和谷氨酰胺12之间的区域,并向C端方向延伸。弛豫测量表明,与长度增加的寡磷酸盐结合会导致精氨酰和赖氨酰残基的带正电荷侧链以及α-螺旋区域中苏氨酸9的侧链的内部流动性降低。磷酸基团与带正电荷侧链结合后,该病毒外壳蛋白N端部分形成α-螺旋,这被认为在RNA结合中起重要作用。

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