阻止 BMP4 原域磷酸化的突变会损害同源二聚体的蛋白水解成熟,导致小鼠早期死亡。

Hyung-Seok Kim, Mary L Sanchez, Joshua Silva, Heidi L Schubert, Rebecca Dennis, Christopher P Hill, Jan L Christian
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引用次数: 0

摘要

骨形态发生蛋白4(BMP4)在胚胎发生过程中发挥着多种作用,可作为同源二聚体或活性更强的BMP4/7异源二聚体发出信号。骨形态发生蛋白以非活性前体蛋白的形式生成,二聚体被裂解后生成具有生物活性的配体和非活性原域片段。在人类中,BMP4 原域的杂合突变与出生缺陷有关。我们研究了其中两个突变(p.S91C 和 p.E93G)对配体活性的影响,这两个突变破坏了一个保守的 FAM20C 磷酸化基序。我们比较了在章鱼胚胎中由 BMP4、BMP4 S91C 或 BMP4 E93G 前体蛋白生成的 BMP4 同源二聚体或异源二聚体的活性,发现这些突变降低了 BMP4 同源二聚体的活性,但没有降低异源二聚体的活性。我们产生了 Bmp4 S91C 和 Bmp4 E93G 基因敲入小鼠,发现 Bmp4 S91C/S91C 小鼠在 E11.5 期死亡,并在 E10.5 期在包括心脏在内的多个组织中显示出 BMP 活性降低。大多数 Bmp4 E93G/E93G 小鼠在断奶前死亡,Bmp4 -/E93G 突变体在产前死亡,眼睛、心脏和腹壁闭合缺陷减少或消失。从 Bmp4 S91C 和 Bmp4 E93G 胚胎中分离出的小鼠胚胎成纤维细胞(MEFs)显示出 BMP4 前体蛋白的积累、裂解 BMP 配体水平的降低以及相对于野生型同窝 MEFs 的 BMP 活性的降低。由于 Bmp7 在 MEFs 中不表达,因此携带这些突变的小鼠体内未加工的 BMP4 前体蛋白的积累很可能反映了它们无法裂解 BMP4 同源二聚体,从而导致体内裂解配体水平和 BMP 活性降低。我们的研究结果表明,BMP4原链的磷酸化是蛋白水解激活BMP4同源二聚体所必需的,但不是异源二聚体:与人类先天缺陷相关的突变阻止了 BMP4 原链的磷酸化,从而排除了前体蛋白的蛋白水解活化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mutations that prevent phosphorylation of the BMP4 prodomain impair proteolytic maturation of homodimers leading to lethality in mice.

Bone morphogenetic protein4 (BMP4) plays numerous roles during embryogenesis and can signal either alone as a homodimer, or together with BMP7 as a more active heterodimer. BMPs are generated as inactive precursor proteins that dimerize and are cleaved to generate the bioactive ligand and inactive prodomain fragments. In humans, heterozygous mutations within the prodomain of BMP4 are associated with birth defects. We studied the effect of two of these mutations (p.S91C and p.E93G), which disrupt a conserved FAM20C phosphorylation motif, on ligand activity. We compared the activity of ligands generated from BMP4, BMP4S91C or BMP4E93G in Xenopus embryos and found that these mutations reduce the activity of BMP4 homodimers but not BMP4/7 heterodimers. We generated Bmp4S91C and Bmp4E93G knock-in mice and found that Bmp4S91C/S91C mice die by E11.5 and display reduced BMP activity in multiple tissues including the heart. Most Bmp4E93G/E93G mice die before weaning and Bmp4-/E93G mutants die prenatally with reduced or absent eyes, heart and ventral body wall closure defects. Mouse embryonic fibroblasts (MEFs) isolated from Bmp4S91C and Bmp4E93G embryos show accumulation of BMP4 precursor protein, reduced levels of cleaved BMP ligand and reduced BMP activity relative to MEFs from wild type littermates. Because Bmp7 is not expressed in MEFs, the accumulation of unprocessed BMP4 precursor protein in mice carrying these mutations most likely reflects an inability to cleave BMP4 homodimers, leading to reduced levels of ligand and BMP activity in vivo. Our results suggest that phosphorylation of the BMP4 prodomain is required for proteolytic activation of BMP4 homodimers, but not heterodimers.

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