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Sigma-2 受体/TMEM97 和 PGRMC-1 通过形成三元复合物增加 LDL 受体内化 LDL 的速率。

Sigma-2 Receptor/TMEM97 and PGRMC-1 Increase the Rate of Internalization of LDL by LDL Receptor through the Formation of a Ternary Complex.

机构信息

Department of Radiology, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Sci Rep. 2018 Nov 15;8(1):16845. doi: 10.1038/s41598-018-35430-3.

Abstract

CRISPR/Cas gene studies were conducted in HeLa cells where either PGRMC1, TMEM97 or both proteins were removed via gene editing. A series of radioligand binding studies, confocal microscopy studies, and internalization of radiolabeled or fluorescently tagged LDL particles were then conducted in these cells. The results indicate that PGRMC1 knockout (KO) did not reduce the density of binding sites for the sigma-2 receptor (σ2R) radioligands, [I]RHM-4 or [H]DTG, but a reduction in the receptor affinity of both radioligands was observed. TMEM97 KO resulted in a complete loss of binding of [I]RHM-4 and a significant reduction in binding of [H]DTG. TMEM97 KO and PGRMC1 KO resulted in an equal reduction in the rate of uptake of fluorescently-tagged or H-labeled LDL, and knocking out both proteins did not result in a further rate of reduction of LDL uptake. Confocal microscopy and Proximity Ligation Assay studies indicated a clear co-localization of LDLR, PGRMC1 and TMEM97. These data indicate that the formation of a ternary complex of LDLR-PGRMC1-TMEM97 is necessary for the rapid internalization of LDL by LDLR.

摘要

在 HeLa 细胞中进行了 CRISPR/Cas 基因研究,通过基因编辑去除了 PGRMC1、TMEM97 或这两种蛋白质。然后在这些细胞中进行了一系列放射性配体结合研究、共聚焦显微镜研究和放射性标记或荧光标记 LDL 颗粒的内化。结果表明,PGRMC1 敲除 (KO) 不会降低 sigma-2 受体 (σ2R) 放射性配体 [I]RHM-4 或 [H]DTG 的结合位点密度,但观察到两种放射性配体的受体亲和力降低。TMEM97 KO 导致 [I]RHM-4 的结合完全丧失,[H]DTG 的结合显著减少。TMEM97 KO 和 PGRMC1 KO 导致荧光标记或 H 标记 LDL 的摄取率相等降低,敲除这两种蛋白质不会导致 LDL 摄取率进一步降低。共聚焦显微镜和邻近连接分析研究表明 LDLR、PGRMC1 和 TMEM97 明显共定位。这些数据表明,LDLR-PGRMC1-TMEM97 三元复合物的形成是 LDLR 快速内化 LDL 所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47f8/6238005/f02537125042/41598_2018_35430_Fig1_HTML.jpg

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