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白色念珠菌磷脂酰丝氨酸合酶六聚体的增溶、纯化和特性研究。

Solubilization, purification, and characterization of the hexameric form of phosphatidylserine synthase from Candida albicans.

机构信息

Department of Microbiology, University of Tennessee at Knoxville, Knoxville, Tennessee, USA.

Department of Biochemistry Cellular and Molecular Biology, University of Tennessee at Knoxville, Knoxville, Tennessee, USA.

出版信息

J Biol Chem. 2023 Jun;299(6):104756. doi: 10.1016/j.jbc.2023.104756. Epub 2023 Apr 26.

Abstract

Phosphatidylserine (PS) synthase from Candida albicans, encoded by the CHO1 gene, has been identified as a potential drug target for new antifungals against systemic candidiasis. Rational drug design or small molecule screening are effective ways to identify specific inhibitors of Cho1, but both will be facilitated by protein purification. Due to the transmembrane nature of Cho1, methods were needed to solubilize and purify the native form of Cho1. Here, we used six non-ionic detergents and three styrene maleic acids (SMAs) to solubilize an HA-tagged Cho1 protein from the total microsomal fractions. Blue native PAGE and immunoblot analysis revealed a single band corresponding to Cho1 in all detergent-solubilized fractions, while two bands were present in the SMA2000-solubilized fraction. Our enzymatic assay suggests that digitonin- or DDM-solubilized enzyme has the most PS synthase activity. Pull-downs of HA-tagged Cho1 from the digitonin-solubilized fraction reveal an apparent MW of Cho1 consistent with a hexamer. Furthermore, negative-staining electron microscopy analysis and AlphaFold2 structure prediction modeling suggest the hexamer is composed of a trimer of dimers. We purified Cho1 protein to near-homogeneity as a hexamer using affinity chromatography and TEV protease treatment, and optimized Cho1 enzyme activity for manganese and detergent concentrations, temperature (24 °C), and pH (8.0). The purified Cho1 has a K for its substrate CDP-diacylglycerol of 72.20 μM with a V of 0.079 nmol/(μg∗min) while exhibiting a sigmoidal kinetic curve for its other substrate serine, indicating cooperative binding. Purified hexameric Cho1 can potentially be used in downstream structure determination and small drug screening.

摘要

白色念珠菌的磷脂酰丝氨酸(PS)合酶,由 CHO1 基因编码,已被鉴定为治疗系统性念珠菌病的新型抗真菌药物的潜在靶标。理性药物设计或小分子筛选是鉴定 Cho1 特异性抑制剂的有效方法,但这两种方法都需要进行蛋白质纯化。由于 Cho1 具有跨膜性质,因此需要使用方法来溶解和纯化 Cho1 的天然形式。在这里,我们使用了六种非离子型去污剂和三种苯乙烯马来酸(SMA)来溶解 HA 标记的 Cho1 蛋白从总微粒体部分。蓝色 native PAGE 和免疫印迹分析显示,所有去污剂溶解的级分中都存在与 Cho1 相对应的单一条带,而 SMA2000 溶解的级分中存在两条带。我们的酶促测定表明,胆酸钠或 DDM 溶解的酶具有最高的 PS 合酶活性。从胆酸钠溶解的级分中下拉 HA 标记的 Cho1 显示出与六聚体一致的明显 MW。此外,负染色电子显微镜分析和 AlphaFold2 结构预测建模表明,六聚体由三聚体组成二聚体。我们使用亲和层析和 TEV 蛋白酶处理将 Cho1 蛋白纯化至近乎均一的六聚体,并优化了 Cho1 酶对锰和去污剂浓度、温度(24°C)和 pH(8.0)的活性。纯化的 Cho1 对其底物 CDP-二酰基甘油的 K 为 72.20 μM,V 为 0.079 nmol/(μg∗min),而对其另一种底物丝氨酸表现出 S 形动力学曲线,表明协同结合。纯化的六聚体 Cho1 可潜在用于下游结构测定和小分子药物筛选。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4900/10248529/8416f5637f59/gr1.jpg

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