红细胞分化依赖于 VPS13A 与 K562 细胞质膜上 XK 的相互作用

Contact (Thousand Oaks (Ventura County, Calif.)) Pub Date : 2023-12-21 eCollection Date: 2023-01-01 DOI:10.1177/25152564231215133
Chase Amos, Peng Xu, Pietro De Camilli
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引用次数: 0

摘要

桥状脂质转运蛋白 VPS13A 和脂质扰乱酶 XK 的突变分别导致了舞蹈棘细胞增多症(ChAc)和麦克劳德综合征(MLS),这两种类似的病症涉及神经变性和畸形红细胞(棘细胞)。VPS13A 与 XK 结合,这表明 VPS13A 在内质网(ER)和 XK 所在的质膜(PM)之间形成了脂质运输桥梁。然而,在 HeLa 和 COS7 细胞中对 VPS13A 的研究表明,该蛋白主要定位于 ER 与线粒体的接触处。在这些细胞中过表达 XK 会将 VPS13A 重新分配到 ER 中的生物合成 XK 池中,而不会重新分配到 PM 定位的 XK 中。只有当过量表达的XK发生突变,使其VPS13A结合位点脱离分子内相互作用时,才能观察到VPS13A与XK在PM处的共定位。由于 ChAc 和 MLS 的棘细胞表型表明了这两种蛋白在红系细胞中的作用,因此我们探索了它们在 K562 细胞中的定位。当标记的 VPS13A 在 hemin 处理过的 K562 细胞中过表达时,可观察到 VPS13A 阳性的 ER-PM 接触的稳健形成,而在 XK KO 细胞中,它们的形成被取消。在未分化的 K562 细胞中很少观察到 VPS13A 阳性的 ER-PM 接触,尽管这些细胞中 XK 的浓度与分化后观察到的浓度相似。这些发现表明,VPS13A与XK在ER-PM接触处的相互作用需要一种取决于细胞类型和/或细胞功能状态的允许状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Erythroid Differentiation Dependent Interaction of VPS13A with XK at the Plasma Membrane of K562 Cells.

Erythroid Differentiation Dependent Interaction of VPS13A with XK at the Plasma Membrane of K562 Cells.

Erythroid Differentiation Dependent Interaction of VPS13A with XK at the Plasma Membrane of K562 Cells.

Erythroid Differentiation Dependent Interaction of VPS13A with XK at the Plasma Membrane of K562 Cells.

Mutations of the bridge-like lipid transport protein VPS13A and the lipid scramblase XK result in Chorea Acanthocytosis (ChAc) and McLeod syndrome (MLS), respectively, two similar conditions involving neurodegeneration and deformed erythrocytes (acanthocytes). VPS13A binds XK, suggesting a model in which VPS13A forms a lipid transport bridge between the endoplasmic reticulum (ER) and the plasma membrane (PM), where XK resides. However, studies of VPS13A in HeLa and COS7 cells showed that this protein localizes primarily at contacts of the ER with mitochondria. Overexpression of XK in these cells redistributed VPS13A to the biosynthetic XK pool in the ER but not to PM-localized XK. Colocalization of VPS13A with XK at the PM was only observed if overexpressed XK harbored mutations that disengaged its VPS13A-binding site from an intramolecular interaction. As the acanthocytosis phenotype of ChAc and MLS suggests a role of the two proteins in cells of the erythroid lineage, we explored their localization in K562 cells, which differentiate into erythroblasts upon hemin addition. When tagged VPS13A was overexpressed in hemin-treated K562 cells, robust formation of ER-PM contacts positive for VPS13A was observed and their formation was abolished in XK KO cells. ER-PM contacts positive for VPS13A were seldom observed in undifferentiated K562 cells, despite the presence of XK in these cells at concentrations similar to those observed after differentiation. These findings reveal that the interaction of VPS13A with XK at ER-PM contacts requires a permissive state which depends upon cell type and/or functional state of the cell.

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