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影响 TRPV6 表面表达的突变与婴儿胎盘丝氨酸蛋白酶的上调有关。

Mutations That Affect the Surface Expression of TRPV6 Are Associated with the Upregulation of Serine Proteases in the Placenta of an Infant.

机构信息

Experimental and Clinical Pharmacology and Toxicology, Center for Molecular Signaling (PZMS), Saarland University, Buildings 61.4 and 46, 66421 Homburg, Germany.

Transgenic Technologies, Center for Molecular Signaling (PZMS), Saarland University, Building 61.4, 66421 Homburg, Germany.

出版信息

Int J Mol Sci. 2021 Nov 24;22(23):12694. doi: 10.3390/ijms222312694.

Abstract

Recently, we reported a case of an infant with neonatal severe under-mineralizing skeletal dysplasia caused by mutations within both alleles of the gene. One mutation results in an in frame stop codon (Rstop) that leads to a truncated, nonfunctional TRPV6 channel, and the second in a point mutation (GR) that, surprisingly, does not affect the Ca permeability of TRPV6. We mimicked the subunit composition of the unaffected heterozygous parent and child by coexpressing the TRPV6 GR and Rstop mutants and combinations with wild type TRPV6. We show that both the GR and Rstop mutant subunits are expressed and result in decreased calcium uptake, which is the result of the reduced abundancy of functional TRPV6 channels within the plasma membrane. We compared the proteomic profiles of a healthy placenta with that of the diseased infant and detected, exclusively in the latter two proteases, HTRA1 and cathepsin G. Our results implicate that the combination of the two mutant TRPV6 subunits, which are expressed in the placenta of the diseased child, is responsible for the decreased calcium uptake, which could explain the skeletal dysplasia. In addition, placental calcium deficiency also appears to be associated with an increase in the expression of proteases.

摘要

最近,我们报道了一例由 基因两个等位基因突变引起的新生儿严重低矿化性骨骼发育不良的婴儿病例。一个突变导致移码终止(Rstop),导致 TRPV6 通道截断,无功能;另一个点突变(GR),令人惊讶的是,不影响 TRPV6 的钙通透性。我们通过共表达 TRPV6 GR 和 Rstop 突变体及其与野生型 TRPV6 的组合,模拟未受影响的杂合子父母和孩子的亚基组成。我们表明,GR 和 Rstop 突变亚基均表达,并导致钙摄取减少,这是由于质膜内功能性 TRPV6 通道的丰度降低所致。我们比较了健康胎盘和患病婴儿的蛋白质组图谱,并在后者中仅检测到两种蛋白酶,即 HTRA1 和组织蛋白酶 G。我们的结果表明,在患病婴儿胎盘表达的两种突变 TRPV6 亚基的组合,负责钙摄取减少,这可以解释骨骼发育不良。此外,胎盘钙缺乏似乎也与蛋白酶表达增加有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b967/8657554/1eaf9048169e/ijms-22-12694-g001.jpg

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