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分泌性前体蛋白转化酶PCSK9的细胞运输及其对低密度脂蛋白受体(LDLR)的依赖性。

The cellular trafficking of the secretory proprotein convertase PCSK9 and its dependence on the LDLR.

作者信息

Nassoury Nasha, Blasiole Daniel A, Tebon Oler Angie, Benjannet Suzanne, Hamelin Josée, Poupon Vivianne, McPherson Peter S, Attie Alan D, Prat Annik, Seidah Nabil G

机构信息

Laboratory of Biochemical Neuroendocrinology, Clinical Research Institute of Montreal, 110 Pine Avenue West, Montreal, Quebec, Canada H2W 1R7.

出版信息

Traffic. 2007 Jun;8(6):718-32. doi: 10.1111/j.1600-0854.2007.00562.x. Epub 2007 Apr 25.

Abstract

Mutations in the proprotein convertase PCSK9 gene are associated with autosomal dominant familial hyper- or hypocholesterolemia. These phenotypes are caused by a gain or loss of function of proprotein convertase subtilisin kexin 9 (PCSK9) to elicit the degradation of the low-density lipoprotein receptor (LDLR) protein. Herein, we asked whether the subcellular localization of wild-type PCSK9 or mutants of PCSK9 and the LDLR would provide insight into the mechanism of PCSK9-dependent LDLR degradation. We show that the LDLR is the dominant partner in regulating the cellular trafficking of PCSK9. In cells lacking the LDLR, PCSK9 localized in the endoplasmic reticulum (ER). In cells expressing the LDLR, PCSK9 sorted to post-ER compartments (i.e. endosomes in cell lines and Golgi apparatus in primary hepatocytes), where it colocalized with the LDLR. In cell lines, PCSK9 also colocalized with the LDLR at the cell surface, requiring the presence of the C-terminal Cys/His-rich domain of PCSK9. We provide evidence that PCSK9 promotes the degradation of the LDLR by an endocytic mechanism, as small interfering RNA-mediated knockdown of the clathrin heavy chain reduced the functional activity of PCSK9. We also compared the subcellular localization of natural mutants of PCSK9 with that of the wild-type enzyme in human hepatic (HuH7) cells. Whereas the mutants associated with hypercholesterolemia (S127R, F216L and R218S) localized to endosomes/lysosomes, those associated with hypocholesterolemia did not reach this compartment. We conclude that the sorting of PCSK9 to the cell surface and endosomes is required for PCSK9 to fully promote LDLR degradation and that retention in the ER prevents this activity. Mutations that affect this transport can lead to hyper- or hypocholesterolemia.

摘要

前蛋白转化酶PCSK9基因的突变与常染色体显性家族性高胆固醇血症或低胆固醇血症相关。这些表型是由前蛋白转化酶枯草杆菌蛋白酶/kexin 9(PCSK9)功能的获得或丧失引起的,其作用是引发低密度脂蛋白受体(LDLR)蛋白的降解。在此,我们探究野生型PCSK9或PCSK9与LDLR的突变体的亚细胞定位是否能为PCSK9依赖性LDLR降解机制提供线索。我们发现LDLR是调节PCSK9细胞内运输的主要伙伴。在缺乏LDLR的细胞中,PCSK9定位于内质网(ER)。在表达LDLR的细胞中,PCSK9分选至ER后区室(即细胞系中的内体和原代肝细胞中的高尔基体),并与LDLR共定位。在细胞系中,PCSK9也与LDLR在细胞表面共定位,这需要PCSK9 C端富含半胱氨酸/组氨酸的结构域的存在。我们提供证据表明PCSK9通过内吞机制促进LDLR的降解,因为小干扰RNA介导的网格蛋白重链敲低降低了PCSK9的功能活性。我们还比较了PCSK9天然突变体与人肝(HuH7)细胞中野生型酶的亚细胞定位。与高胆固醇血症相关的突变体(S127R、F216L和R218S)定位于内体/溶酶体,而与低胆固醇血症相关的突变体未到达该区室。我们得出结论,PCSK9分选至细胞表面和内体是PCSK9充分促进LDLR降解所必需的,而在内质网中的滞留则阻止了这种活性。影响这种运输的突变可导致高胆固醇血症或低胆固醇血症。

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