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体外重建和人源磷脂翻转酶 3 的生化特性分析:磷脂特异性和金属离子结合研究。

In vitro reconstitution and biochemical characterization of human phospholipid scramblase 3: phospholipid specificity and metal ion binding studies.

机构信息

Applied and Industrial Microbiology Laboratory, Department of Biotechnology, Bhupat and Jyoti Mehta School of Biosciences, Indian Institute of Technology Madras, Chennai 600 036, India.

出版信息

Biol Chem. 2018 Mar 28;399(4):361-374. doi: 10.1515/hsz-2017-0309.

Abstract

Human phospholipid scramblase 3 (hPLSCR3) is a single pass transmembrane protein that plays a vital role in fat metabolism, mitochondrial function, structure, maintenance and apoptosis. The mechanism of action of scramblases remains still unknown, and the role of scramblases in phospholipid translocation is heavily debated. hPLSCR3 is the only member of scramblase family localized to mitochondria and is involved in cardiolipin translocation at the mitochondrial membrane. Direct biochemical evidence of phospholipid translocation by hPLSCR3 is yet to be reported. Functional assay in synthetic proteoliposomes upon Ca2+ and Mg2+ revealed that, apart from cardiolipin, recombinant hPLSCR3 translocates aminophospholipids such as NBD-PE and NBD-PS but not neutral phospholipids. Point mutation in hPLSCR3 (F258V) resulted in decreased Ca2+ binding affinity. Functional assay with F258V-hPLSCR3 led to ~50% loss in scramblase activity in the presence of Ca2+ and Mg2+. Metal ion-induced conformational changes were monitored by intrinsic tryptophan fluorescence, circular dichroism, surface hydrophobicity changes and aggregation studies. Our results revealed that Ca2+ and Mg2+ bind to hPLSCR3 and trigger conformational changes mediated by aggregation. In summary, we suggest that the metal ion-induced conformational change and the aggregation of the protein are essential for the phospholipid translocation by hPLSCR3.

摘要

人源磷脂翻转酶 3(hPLSCR3)是一种单次跨膜蛋白,在脂肪代谢、线粒体功能、结构、维持和细胞凋亡中发挥着重要作用。翻转酶的作用机制尚不清楚,而且翻转酶在磷脂转位中的作用存在很大争议。hPLSCR3 是唯一定位于线粒体的翻转酶家族成员,参与线粒体膜中心磷脂的转位。尚未有 hPLSCR3 介导磷脂转位的直接生化证据的报道。在 Ca2+和 Mg2+存在的情况下,在合成的脂蛋白体中的功能测定表明,除心磷脂外,重组 hPLSCR3 还可转位氨基磷酯,如 NBD-PE 和 NBD-PS,但不能转位中性磷酯。hPLSCR3 的点突变(F258V)导致 Ca2+结合亲和力降低。在 Ca2+和 Mg2+存在的情况下,用 F258V-hPLSCR3 进行功能测定导致翻转酶活性降低约 50%。通过内源性色氨酸荧光、圆二色性、表面疏水性变化和聚集研究监测金属离子诱导的构象变化。我们的结果表明,Ca2+和 Mg2+与 hPLSCR3 结合并触发由聚集介导的构象变化。总之,我们认为金属离子诱导的构象变化和蛋白的聚集是 hPLSCR3 介导磷脂转位所必需的。

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