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小鼠激素原转化酶1前结构域的稳定性和整体折叠

Stability and global fold of the mouse prohormone convertase 1 pro-domain.

作者信息

Tangrea M A, Alexander P, Bryan P N, Eisenstein E, Toedt J, Orban J

机构信息

Center for Advanced Research in Biotechnology, University of Maryland Biotechnology Institute, Rockville 20850, USA.

出版信息

Biochemistry. 2001 May 8;40(18):5488-95. doi: 10.1021/bi0026472.

Abstract

We have purified the mouse prohormone convertase 1 (PC1) pro-domain expressed in Escherichia coli cells and demonstrated, using a number of biophysical methods, that this domain is an independent folding unit with a T(m) of 39 degrees C at a protein concentration of 20 microM and pH 7.0. This differs significantly from similar pro-domains in bacteria and human furin, which are unfolded at 25 degrees C and require the catalytic domain in order to be structured [Bryan et al. (1995) Biochemistry 34, 10310-10318; Bhattacharjya et al. (2000) J. Biomol. NMR 16, 275-276]. Using heteronuclear NMR spectroscopy, we have determined the backbone (1)H, (13)C, and (15)N assignments for the pro-domain of PC1. On the basis of (1)H/(13)C chemical shift indices, NOE analysis, and hydrogen exchange measurements, the pro-domain is shown to consist of a four-stranded beta-sheet and two alpha-helices. The results presented here show that both the bacterial pro-domain in complex with subtilisin and the uncomplexed mouse PC1 pro-domain have very similar overall folds despite a lack of sequence homology. The structural data help to explain the location of the secondary processing sites in the pro-domains of the PC family, and a consensus sequence for binding to the catalytic domain is proposed.

摘要

我们已纯化在大肠杆菌细胞中表达的小鼠激素原转化酶1(PC1)的前结构域,并使用多种生物物理方法证明,该结构域是一个独立的折叠单元,在蛋白质浓度为20μM、pH 7.0时,其熔解温度(T(m))为39℃。这与细菌和人类弗林蛋白酶中类似的前结构域有显著差异,后者在25℃时处于未折叠状态,并且需要催化结构域才能形成结构[Bryan等人(1995年)《生物化学》34卷,10310 - 10318页;Bhattacharjya等人(2000年)《生物分子核磁共振杂志》16卷,275 - 276页]。使用异核核磁共振光谱,我们已确定了PC1前结构域的主链(1)H、(13)C和(15)N归属。基于(1)H/(13)C化学位移指数、核Overhauser效应(NOE)分析和氢交换测量,该前结构域显示由一个四链β折叠片层和两个α螺旋组成。此处呈现的结果表明,尽管缺乏序列同源性,但与枯草杆菌蛋白酶复合的细菌前结构域和未复合的小鼠PC1前结构域具有非常相似的整体折叠。这些结构数据有助于解释PC家族前结构域中二级加工位点的位置,并提出了与催化结构域结合的共有序列。

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