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沃克A突变(K86M)对多药耐药转运蛋白ABCG2寡聚化及表面靶向的影响

Effect of Walker A mutation (K86M) on oligomerization and surface targeting of the multidrug resistance transporter ABCG2.

作者信息

Henriksen Ulla, Gether Ulrik, Litman Thomas

机构信息

Molecular Neuropharmacology Group, Department of Pharmacology, The Panum Institute, Blegdamsvej 3, University of Copenhagen, DK-2200 Copenhagen, Denmark.

出版信息

J Cell Sci. 2005 Apr 1;118(Pt 7):1417-26. doi: 10.1242/jcs.01729. Epub 2005 Mar 15.

Abstract

The ATP binding cassette (ABC) half-transporter ABCG2 (MXR/BCRP/ABCP) is associated with mitoxantrone resistance accompanied by cross-resistance to a broad spectrum of cytotoxic drugs. Here we investigate the functional consequences of mutating a highly conserved lysine in the Walker A motif of the nucleotide binding domain (NBD) known to be critical for ATP binding and/or hydrolysis in ABC transporters. The mutant (ABCG2-K86M) was inactive as expected but was expressed at similar levels as the wild-type (wt) protein. The mutation did not affect the predicted oligomerization properties of the transporter; hence, co-immunoprecipitation experiments using differentially tagged transporters showed evidence for oligomerization of both ABCG2-wt and of ABCG2-wt with ABCG2-K86M. We also obtained evidence that both ABCG2-wt and ABCG2-K86M exist in the cells as disulfide-linked dimers. Moreover, measurement of prazosin-stimulated ATPase activity revealed a dominant-negative effect of ABCG2-K86M on ABCG2-wt function in co-transfected HEK293 cells. This is consistent with the requirement for at least two active NBDs for transporter activity and suggests that the transporter is a functional dimer. Finally, we analyzed targeting of ABCG2-wt and ABCG2-K86M and observed that they localize to two distinct subcellular compartments: ABCG2-wt targets the cell surface whereas ABCG2-K86M is targeted to the Golgi apparatus followed by retrieval to the endoplasmic reticulum. This suggests an as yet unknown role of the NBDs in assisting proper surface targeting of ABC transporters.

摘要

ATP结合盒(ABC)半转运体ABCG2(MXR/BCRP/ABCP)与米托蒽醌耐药相关,并伴有对多种细胞毒性药物的交叉耐药。在此,我们研究了核苷酸结合域(NBD)的沃克A基序中一个高度保守的赖氨酸发生突变的功能后果,已知该赖氨酸对ABC转运体中的ATP结合和/或水解至关重要。突变体(ABCG2-K86M)如预期那样无活性,但表达水平与野生型(wt)蛋白相似。该突变不影响转运体预测的寡聚化特性;因此,使用差异标记的转运体进行的共免疫沉淀实验显示了ABCG2-wt以及ABCG2-wt与ABCG2-K86M寡聚化的证据。我们还获得证据表明,ABCG2-wt和ABCG2-K86M在细胞中均以二硫键连接的二聚体形式存在。此外,对哌唑嗪刺激的ATP酶活性测定揭示了在共转染的HEK293细胞中,ABCG2-K86M对ABCG2-wt功能具有显性负效应。这与转运体活性需要至少两个活性NBD一致,并表明该转运体是一个功能性二聚体。最后,我们分析了ABCG2-wt和ABCG2-K86M的靶向定位,观察到它们定位于两个不同的亚细胞区室:ABCG2-wt靶向细胞表面,而ABCG2-K86M靶向高尔基体,随后被运回内质网。这表明NBD在协助ABC转运体正确的表面靶向定位中具有尚未明确的作用。

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