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单体间相互作用对于阳离子依赖的甘露糖 6-磷酸受体结合溶酶体酶是必不可少的。

Intermonomer interactions are essential for lysosomal enzyme binding by the cation-dependent mannose 6-phosphate receptor.

机构信息

Department of Biochemistry, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.

出版信息

Biochemistry. 2010 Jan 12;49(1):236-46. doi: 10.1021/bi901725x.

Abstract

The 46 kDa cation-dependent mannose 6-phosphate receptor (CD-MPR) plays a key role in the delivery of lysosomal enzymes to the lysosome by binding newly synthesized mannose 6-phosphate (Man-6-P)-containing acid hydrolases and diverting them from the secretory pathway. Previous studies on a truncated form of the receptor comprised of only the soluble extracellular region (sCD-MPR, residues 1-154) have shown that the CD-MPR exists as a homodimer and exhibits two distinct conformations in the ligand-bound versus ligand-unbound states, involving changes in quaternary structure and positioning of loop D, the residues of which form a side of the binding pocket in the presence of ligand. To determine the role of intermonomer contacts in the functioning of the sCD-MPR, site-directed mutagenesis was used to generate a construct lacking a salt bridge (Glu19-Lys137) that tethers the N-terminal alpha-helix of one subunit to loop D of the other subunit in the ligand-bound form. Here we show by surface plasmon resonance analyses and NMR spectroscopy that the elimination of this intermonomer salt bridge significantly decreases the binding affinity of the mutant receptor (E19Q/K137M) toward lysosomal enzymes and Man-6-P. Analyses of the E19Q/K137M mutant receptor crystallized under various conditions revealed an altered quaternary structure that is intermediate between those observed in the ligand-bound and ligand-unbound states. Taken together, the results demonstrate a key role for intermonomer interactions in the structure and functioning of the CD-MPR.

摘要

46kDa 阳离子依赖性甘露糖 6-磷酸受体(CD-MPR)在将溶酶体酶递送至溶酶体的过程中起着关键作用,它通过结合新合成的含有甘露糖 6-磷酸(Man-6-P)的酸性水解酶,并将其从分泌途径中转移来实现这一功能。先前对仅包含可溶性细胞外区域(sCD-MPR,残基 1-154)的受体截断形式的研究表明,CD-MPR 以同源二聚体的形式存在,并在配体结合与非配体结合状态下表现出两种不同的构象,涉及四级结构的变化和环 D 的定位,在配体存在的情况下,环 D 的残基形成结合口袋的一侧。为了确定单体间接触在 sCD-MPR 功能中的作用,我们使用定点突变技术生成了一种缺乏盐桥(Glu19-Lys137)的构建体,该盐桥将一个亚基的 N 端α-螺旋与另一个亚基的环 D 连接在一起,在配体结合形式下。在这里,我们通过表面等离子体共振分析和 NMR 光谱学表明,消除这种单体间盐桥显著降低了突变受体(E19Q/K137M)对溶酶体酶和 Man-6-P 的结合亲和力。对在各种条件下结晶的 E19Q/K137M 突变受体的分析揭示了一种改变的四级结构,它介于配体结合和非配体结合状态下观察到的结构之间。总之,这些结果表明单体间相互作用在 CD-MPR 的结构和功能中起着关键作用。

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