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白斑角鲨髓鞘碱性蛋白的翻译后修饰研究。

Studies of posttranslational modifications in spiny dogfish myelin basic protein.

作者信息

Zand R, Jin X, Kim J, Wall D B, Gould R, Lubman D M

机构信息

Department of Biological Chemistry, University of Michigan, Ann Arbor 48109-1055, USA.

出版信息

Neurochem Res. 2001 May;26(5):539-47. doi: 10.1023/a:1010921230859.

Abstract

The objective of this investigation was to determine whether nonmammalian myelin basic protein contained charge isomers resulting from extensive posttranslational modifications as seen in mammalian MBP. Four charge isomer components from dogfish MBP have been isolated. These forms arise by phosphorylation and deamidation modifications. Components C1, C2 and C3 have been characterized. We are currently characterizing component C8. Dogfish MBP is less cationic than mammalian MBP and has about 50% lower mobility on a basic pH gel electrophoresis relative to human and to bovine MBP. The mammalian component C1, which is unmodified, is modified in the dogfish by phosphorylation. The reduced electrophoretic mobility is largely attributable to the charge reduction resulting from phosphorylation in serine 72, 83, and 120 or 121 in C1, and C3. In component C2, two or three phosphate groups were distributed among residues 134, 138 and 139. It was found that dogfish amino acid residue 30 was a lysine residue and not a glutamate residue as reported in the literature.

摘要

本研究的目的是确定非哺乳动物髓鞘碱性蛋白(MBP)是否像哺乳动物MBP那样含有由广泛的翻译后修饰产生的电荷异构体。已从鲨鱼MBP中分离出四种电荷异构体成分。这些形式是由磷酸化和脱酰胺修饰产生的。已对成分C1、C2和C3进行了表征。我们目前正在对成分C8进行表征。鲨鱼MBP的阳离子性低于哺乳动物MBP,在碱性pH凝胶电泳上相对于人和牛MBP的迁移率约低50%。哺乳动物未修饰的成分C1在鲨鱼中通过磷酸化进行了修饰。电泳迁移率降低主要归因于C1和C3中丝氨酸72、83以及120或121处磷酸化导致的电荷减少。在成分C2中,两个或三个磷酸基团分布在残基134、138和139之间。研究发现,鲨鱼的氨基酸残基30是赖氨酸残基,而不是文献中报道的谷氨酸残基。

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