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利用差异液相色谱/质谱技术鉴定人丝聚合蛋白的氨基末端:对前丝聚合蛋白加工的影响

Identification of the amino terminus of human filaggrin using differential LC/MS techniques: implications for profilaggrin processing.

作者信息

Thulin C D, Walsh K A

机构信息

Department of Biochemistry, University of Washington, Seattle 98195, USA.

出版信息

Biochemistry. 1995 Jul 11;34(27):8687-92. doi: 10.1021/bi00027a018.

Abstract

Filaggrin, the intermediate filament aggregating protein of epidermis, is the product of proteolytic processing of the precursor profilaggrin, which consists of 10-20 tandem filaggrin domains. The proteolytic processing sites in mouse and rat profilaggrin have been previously reported. Mouse filaggrin is N-terminally blocked. Rat filaggrin is N-terminally ragged, making it heterogeneous. Human filaggrin, in addition to being N-terminally blocked and potentially ragged at the amino terminus, is heterogeneous due to sequence variation between one filaggrin domain and another along the profilaggrin gene. This complexity has made more difficult the analysis of processing sites in human profilaggrin. We have identified the amino terminus of human filaggrin by applying a general method we have developed for the recognition of amino-terminal peptides in digests of N-terminally blocked proteins. This method compares the peptides in an acetylated and an unacetylated tryptic digest of the protein during their separation by liquid chromatography on-line with electrospray mass spectrometry. In this comparison only the original blocked amino-terminal peptides appear unchanged between the two profiles. Human filaggrin was found to have a heterogeneous N-terminus, as a result both of sequence heterogeneity and of ragged processing; it is blocked by a pyrrolidonecarboxyl group derived from glutamine. By comparison to the termini of rat and mouse filaggrins, implications for the processing of human profilaggrin are discussed.

摘要

丝聚合蛋白是表皮中间丝聚集蛋白,是前体前丝聚合蛋白经蛋白水解加工后的产物,前丝聚合蛋白由10 - 20个串联的丝聚合蛋白结构域组成。小鼠和大鼠前丝聚合蛋白中的蛋白水解加工位点此前已有报道。小鼠丝聚合蛋白的N端被封闭。大鼠丝聚合蛋白的N端参差不齐,使其具有异质性。人丝聚合蛋白除了N端被封闭且在氨基末端可能参差不齐外,由于前丝聚合蛋白基因上一个丝聚合蛋白结构域与另一个结构域之间的序列变异,也具有异质性。这种复杂性使得对人前丝聚合蛋白加工位点的分析更加困难。我们通过应用一种我们开发的用于识别N端封闭蛋白消化物中氨基末端肽段的通用方法,确定了人丝聚合蛋白的氨基末端。该方法在通过液相色谱与电喷雾质谱联用在线分离蛋白质的乙酰化和未乙酰化胰蛋白酶消化物中的肽段时,对两者进行比较。在这种比较中,只有原始的封闭氨基末端肽段在两个图谱之间保持不变。结果发现,人丝聚合蛋白的N端具有异质性,这是序列异质性和参差不齐的加工共同导致的;它被源自谷氨酰胺的吡咯烷酮羧基封闭。通过与大鼠和小鼠丝聚合蛋白的末端进行比较,讨论了对人前丝聚合蛋白加工的影响。

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