Nadler S G, Kapouch J L, Elliott J I, Williams K R
Department of Molecular Biophysics and Biochemistry, Yale University School of Medicine, New Haven, Connecticut 06510.
J Biol Chem. 1992 Feb 25;267(6):3750-7.
We have used synthetic peptides to study a conserved RNA binding motif in yeast poly(A)-binding protein. Two peptides, 45 and 44 amino acids in length, corresponding to amino and carboxyl halves of a 90-amino acid RNA-binding domain in the protein were synthesized. While the amino-terminal peptide had no significant affinity for nucleic acids, the carboxyl-terminal peptide-bound nucleic acids with similar characteristics to that for the entire 577 residue yeast poly(A)-binding protein. In 100 mM NaCl, the latter peptide retained over 50% of the intrinsic binding free energy of the protein, as well as, similar RNA versus DNA binding specificity. However, shuffling of the sequence of this 44 residue peptide had surprisingly little effect on its nucleic acid binding properties suggesting the overriding importance of amino acid composition as opposed to primary sequence. Deletion studies on the 44 residue peptide with the "correct" sequence succeeded in identifying amino acids important for conferring RNA specificity and for increasing our understanding of the molecular basis for nucleic acid binding by synthetic peptides. The shuffled peptide study, however, clearly indicates that considerable caution must be exercised before extrapolating results of structure/function studies on synthetic peptide analogues to the parent protein.
我们利用合成肽来研究酵母聚腺苷酸结合蛋白中一个保守的RNA结合基序。合成了两个肽段,长度分别为45个和44个氨基酸,对应于该蛋白90个氨基酸的RNA结合结构域的氨基端和羧基端。虽然氨基端肽段对核酸没有明显亲和力,但羧基端肽段结合核酸的特性与整个577个残基的酵母聚腺苷酸结合蛋白相似。在100 mM NaCl中,后一种肽段保留了该蛋白超过50%的内在结合自由能,以及相似的RNA与DNA结合特异性。然而,这个44个残基肽段的序列改组对其核酸结合特性的影响出人意料地小,这表明氨基酸组成比一级序列更为重要。对具有“正确”序列的44个残基肽段进行的缺失研究成功地鉴定出了赋予RNA特异性以及增进我们对合成肽与核酸结合分子基础理解的重要氨基酸。然而,改组肽段的研究清楚地表明,在将合成肽类似物的结构/功能研究结果外推至亲本蛋白之前,必须格外谨慎。