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来自人晶状体蛋白质聚集体的γS晶状体蛋白Asn-143的脱酰胺作用。

Deamidation of Asn-143 of gamma S crystallin from protein aggregates of the human lens.

作者信息

Takemoto L

机构信息

Division of Biology, Ackert Hall, Kansas State University, Manhattan, Kansas, USA.

出版信息

Curr Eye Res. 2001 Feb;22(2):148-53. doi: 10.1076/ceyr.22.2.148.5524.

Abstract

PURPOSE

Determine if gamma S crystallin is preferentially deamidated in the high molecular weight aggregate fraction of old human lenses.

METHODS

The high molecular weight aggregate and lower molecular weight fractions were prepared from water soluble proteins of old human lenses. Synthetic peptides corresponding to expected amidated and deamidated tryptic fragments of gamma S crystallin, together with reverse phase chromatography, were used to resolve and quantitate possible deamidation of glutamine-92, glutamine-96 and asparagine-143 from this protein.

RESULTS

Analyses of the high molecular weight aggregate from lenses of different ages consistently demonstrated deamidation of asparagine-143, with no deamidation of glutamine-92 or glutamine-96, while analyses of the lower molecular weight fraction from the same lenses showed no detectable deamidation of any of these three residues.

CONCLUSIONS

Preferential deamidation of asparagine-143 of gamma S crystallin is present in the high molecular weight fraction of human lenses, consistent with the possibility that modification of this residue may play a role in the aggregation process occurring in vivo.

摘要

目的

确定γS晶状体蛋白在老年人晶状体高分子量聚集体部分是否优先发生脱酰胺作用。

方法

从老年人晶状体的水溶性蛋白质中制备高分子量聚集体和低分子量部分。与反相色谱法一起,使用对应于γS晶状体蛋白预期酰胺化和脱酰胺化胰蛋白酶片段的合成肽,来解析和定量该蛋白质中谷氨酰胺-92、谷氨酰胺-96和天冬酰胺-143可能的脱酰胺作用。

结果

对不同年龄晶状体的高分子量聚集体的分析一致表明天冬酰胺-143发生了脱酰胺作用,而谷氨酰胺-92或谷氨酰胺-96未发生脱酰胺作用,同时对同一晶状体低分子量部分的分析显示这三个残基中任何一个均未检测到脱酰胺作用。

结论

γS晶状体蛋白的天冬酰胺-143在人晶状体的高分子量部分存在优先脱酰胺作用,这与该残基的修饰可能在体内发生的聚集过程中起作用的可能性一致。

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