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多药耐药蛋白 1 的结构揭示了一个 N 端调节结构域。

The structure of multidrug resistance protein 1 reveals an N-terminal regulatory domain.

机构信息

Harbin Institute of Technology Center for Life Sciences, School of Life Science and Technology, Harbin Institute of Technology, Harbin 150080, China.

出版信息

Proc Natl Acad Sci U S A. 2023 Aug 8;120(32):e2219905120. doi: 10.1073/pnas.2219905120. Epub 2023 Aug 1.

Abstract

multidrug resistance protein 1 (PfMDR1), an adenosine triphosphate (ATP)-binding cassette (ABC) transporter on the digestive vacuole (DV) membrane of the parasite, is associated with the resistance to antimalarial drugs. To understand the mechanisms of PfMDR1, we determined the cryo-electron microscopy structures of this transporter in different states. The transporter in the apo state shows an inward-facing conformation with a large cavity opening to the cytoplasm. Upon ATP binding and dimerization of the nucleotide-binding domains (NBDs), PfMDR1 displays an outward-facing conformation with a cavity toward the DV lumen. Drug resistance-associated mutations were investigated in both structures for their effects, and Y184F was identified as an allosteric activity-enhancing mutation. The amphiphilic substrate-binding site of PfMDR1 was revealed by the complex structure with the antimalarial drug mefloquine and confirmed by mutagenesis studies. Remarkably, a helical structure was found to hinder NBD dimerization and inhibit PfMDR1 activity. The location of this regulatory domain in the N terminus is different from the well-studied R domain in the internal linker region of other ABC transporter family members. The lack of the phosphorylation site of this domain also suggests a different regulation mechanism.

摘要

多药耐药蛋白 1(PfMDR1)是寄生虫消化液泡(DV)膜上的三磷酸腺苷(ATP)结合盒(ABC)转运蛋白,与抗疟药物的耐药性有关。为了了解 PfMDR1 的机制,我们测定了该转运蛋白在不同状态下的冷冻电镜结构。在apo 状态下,转运蛋白呈内向构象,其大腔开口朝向细胞质。在 ATP 结合和核苷酸结合域(NBD)二聚化后,PfMDR1 呈现向外构象,腔朝向 DV 腔。在这两种结构中都研究了与耐药性相关的突变对其的影响,发现 Y184F 是一种增强变构活性的突变。通过与抗疟药物甲氟喹的复合物结构和突变研究揭示了 PfMDR1 的亲脂性底物结合位点。值得注意的是,发现一个螺旋结构会阻碍 NBD 二聚化并抑制 PfMDR1 的活性。该调节域在 N 端的位置与其他 ABC 转运蛋白家族成员内部连接区中研究充分的 R 域不同。该结构域缺乏磷酸化位点表明存在不同的调节机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94e9/10410737/feb772923f25/pnas.2219905120fig01.jpg

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