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用热处理钙调蛋白和一种钙调蛋白肽时环状酰亚胺样结构的形成。

Formation of cyclic imide-like structures upon the treatment of calmodulin and a calmodulin peptide with heat.

作者信息

Martin B L, Wu D, Tabatabai L, Graves D J

机构信息

Department of Biochemistry and Biophysics, Iowa State University, Ames 50011.

出版信息

Arch Biochem Biophys. 1990 Jan;276(1):94-101. doi: 10.1016/0003-9861(90)90014-p.

Abstract

Protein cyclic imide is the putative intermediate in the formation of sites of carboxyl-methylation in eukaryotic proteins. Conditions known to induce the formation of a cyclic imide in model peptides have been applied to a protein, calmodulin. Heating of calmodulin in the dry state at 100 degrees C for 24 h after lyophilization from a pH 2.0 or pH 6.0 solution produces derivatives with altered chromatographic properties in anion-exchange HPLC. At pH 6.0, complete activity of calmodulin was retained. Analysis with Fourier transform infrared (FTIR)-photoacoustic spectroscopy demonstrated the presence of a new structure in the calmodulin molecule consistent with modification of carboxylic acid groups. The conversion of calmodulin is dependent upon the absence of Ca2+ (the presence of 1 mM ethylene glycol bis(beta-aminoethyl ether) N,N'-tetraacetic acid). A peptide analogous to the calcium binding regions of calmodulin, Asp-Lys-Asp-Gly-Asn-Gly-Thr-Ile-Thr-Thr-Lys-Glu, is also converted, upon heating, to chromatographically different forms in reversed-phase chromatography. This process is also dependent upon the absence of calcium. Sequence analysis of the peptide derivatives reveals a second amino terminus, implicating peptide bond hydrolysis in the product. A dipeptide, Asp-Gly, known to form a cyclic imide structure under similar conditions is also hydrolyzed during sequence analysis consistent with cleavage occurring at the position of the cyclic imide structure. Asp3 is suggested to be the site of cyclic imide formation in the calmodulin peptide. The presence of a cyclic imide structure is also confirmed by the application of FTIR-photoacoustic spectroscopy. These data suggest that cyclic imide formation in calmodulin has been induced, possibly at one, or more, of the calcium binding loops of the protein. These modification reactions may provide a basis for future investigations of cyclic imide formation in proteins.

摘要

蛋白质环状酰亚胺是真核生物蛋白质中羧甲基化位点形成过程中的假定中间体。已知能诱导模型肽形成环状酰亚胺的条件已应用于一种蛋白质——钙调蛋白。从pH 2.0或pH 6.0溶液冻干后,将钙调蛋白在干燥状态下于100℃加热24小时,可产生在阴离子交换高效液相色谱中具有改变的色谱性质的衍生物。在pH 6.0时,钙调蛋白保留了完全活性。傅里叶变换红外(FTIR)光声光谱分析表明,钙调蛋白分子中存在一种与羧酸基团修饰一致的新结构。钙调蛋白的转化取决于Ca2+的缺失(存在1 mM乙二醇双(β-氨基乙醚)N,N'-四乙酸)。一种类似于钙调蛋白钙结合区域的肽,Asp-Lys-Asp-Gly-Asn-Gly-Thr-Ile-Thr-Thr-Lys-Glu,在加热后,在反相色谱中也会转化为色谱性质不同的形式。这个过程也取决于钙的缺失。肽衍生物的序列分析揭示了第二个氨基末端,这意味着产物中发生了肽键水解。一种已知在类似条件下形成环状酰亚胺结构的二肽Asp-Gly,在序列分析过程中也会水解,这与在环状酰亚胺结构位置发生的裂解一致。Asp3被认为是钙调蛋白肽中环状酰亚胺形成的位点。FTIR光声光谱的应用也证实了环状酰亚胺结构的存在。这些数据表明,钙调蛋白中环状酰亚胺的形成可能是在蛋白质的一个或多个钙结合环处诱导产生的。这些修饰反应可能为未来蛋白质中环状酰亚胺形成的研究提供基础。

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