Unit for Cardiac and Cardiovascular Genetics, Department of Medical Genetics, University of Oslo, Oslo, Norway.
Transl Res. 2012 Aug;160(2):125-30. doi: 10.1016/j.trsl.2012.01.010. Epub 2012 Jan 31.
Secreted proprotein convertase subtilisin/kexin type 9 (PCSK9) binds to the low-density lipoprotein receptor (LDLR) at the cell surface and disrupts the normal recycling of the LDLR. When human PCSK9 is injected into LDLR-deficient mice, PCSK9 is still rapidly cleared by the liver. This finding may suggest that PCSK9 is physiologically also cleared by receptors other than the LDLR. An alternative explanation could be that PCSK9 has undergone modifications during purification and is cleared by scavenger receptors on liver endothelial sinusoidal cells when injected into mice. If the only mechanism for clearing PCSK9 in humans is through the LDLR, one would expect that differences in the number of LDLRs would affect the plasma levels of low-density lipoprotein cholesterol (LDLC) and PCSK9 in a similar fashion. In this study, levels of LDLC and PCSK9 were measured in familial hypercholesterolemia (FH) homozygotes, FH heterozygotes, and normocholesterolemic subjects. The ratio between the levels of LDLC and PCSK9 was 1.7-fold higher in FH heterozygotes and 3-fold higher in FH homozygotes than in the normocholesterolemic subjects. Thus, defective LDLRs have a greater impact on the levels of LDLC than on the levels of PCSK9. By assuming that the rate of PCSK9 synthesis is similar in the 3 groups, this finding suggests that in humans, plasma PCSK9 is also cleared by LDLR-independent mechanisms.
分泌型蛋白转化酶枯草溶菌素 9(PCSK9)在细胞表面与低密度脂蛋白受体(LDLR)结合,并破坏 LDLR 的正常循环。当人 PCSK9 被注射到 LDLR 缺陷型小鼠中时,PCSK9 仍被肝脏迅速清除。这一发现可能表明,PCSK9 也通过 LDLR 以外的受体进行生理性清除。另一种解释可能是 PCSK9 在纯化过程中发生了修饰,当被注射到小鼠中时,它被肝内皮窦状细胞的清道夫受体清除。如果清除 PCSK9 的唯一机制是通过 LDLR,那么人们会期望 LDLR 数量的差异会以类似的方式影响低密度脂蛋白胆固醇(LDLC)和 PCSK9 的血浆水平。在这项研究中,测量了家族性高胆固醇血症(FH)纯合子、FH 杂合子和正常胆固醇血症患者的 LDLC 和 PCSK9 水平。FH 杂合子的 LDLC 和 PCSK9 水平之比是正常胆固醇血症患者的 1.7 倍,FH 纯合子的 LDLC 和 PCSK9 水平之比是正常胆固醇血症患者的 3 倍。因此,有缺陷的 LDLR 对 LDLC 水平的影响大于对 PCSK9 水平的影响。假设 3 组中 PCSK9 的合成率相似,这一发现表明,在人类中,血浆 PCSK9 也通过 LDLR 非依赖性机制被清除。