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阿尔茨海默病淀粉样β蛋白前体蛋白酶抑制剂结构域的X射线晶体结构

X-ray crystal structure of the protease inhibitor domain of Alzheimer's amyloid beta-protein precursor.

作者信息

Hynes T R, Randal M, Kennedy L A, Eigenbrot C, Kossiakoff A A

机构信息

Protein Engineering Department, Genentech Inc., South San Francisco, California 94080.

出版信息

Biochemistry. 1990 Oct 30;29(43):10018-22. doi: 10.1021/bi00495a002.

Abstract

Alzheimer's amyloid beta-protein precursor contains a Kunitz protease inhibitor domain (APPI) potentially involved in proteolytic events leading to cerebral amyloid deposition. To facilitate the identification of the physiological target of the inhibitor, the crystal structure of APPI has been determined and refined to 1.5-A resolution. Sequences in the inhibitor-protease interface of the correct protease target will reflect the molecular details of the APPI structure. While the overall tertiary fold of APPI is very similar to that of the Kunitz inhibitor BPTI, a significant rearrangement occurs in the backbone conformation of one of the two protease binding loops. A number of Kunitz inhibitors have similar loop sequences, indicating the structural alteration is conserved and potentially an important determinant of inhibitor specificity. In a separate region of the protease binding loops, APPI side chains Met-17 and Phe-34 create an exposed hydrophobic surface in place of Arg-17 and Val-34 in BPTI. The restriction this change places on protease target sequences is seen when the structure of APPI is superimposed on BPTI complexed to serine proteases, where the hydrophobic surface of APPI faces a complementary group of nonpolar side chains on kallikrein A versus polar side chains on trypsin.

摘要

阿尔茨海默病β-淀粉样蛋白前体含有一个Kunitz蛋白酶抑制剂结构域(APPI),其可能参与导致脑淀粉样蛋白沉积的蛋白水解过程。为便于鉴定该抑制剂的生理靶点,已确定APPI的晶体结构并将其精修至1.5埃分辨率。正确蛋白酶靶点的抑制剂-蛋白酶界面中的序列将反映APPI结构的分子细节。虽然APPI的整体三级折叠与Kunitz抑制剂BPTI非常相似,但在两个蛋白酶结合环之一的主链构象中发生了显著重排。许多Kunitz抑制剂具有相似的环序列,表明这种结构改变是保守的,并且可能是抑制剂特异性的重要决定因素。在蛋白酶结合环的另一个区域,APPI的侧链Met-17和Phe-34形成了一个暴露的疏水表面,取代了BPTI中的Arg-17和Val-34。当将APPI的结构叠加到与丝氨酸蛋白酶复合的BPTI上时,可以看到这种变化对蛋白酶靶点序列的限制,其中APPI的疏水表面面对激肽释放酶A上的一组互补非极性侧链,而胰蛋白酶上是极性侧链。

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