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Analysis of MCFD2- and LMAN1-deficient mice demonstrates distinct functions in vivo

机译:对MCFD2和LMAN1缺陷小鼠的分析证明了其在体内的独特功能

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摘要

The LMAN1–MCFD2 complex serves as a cargo receptor for efficient transport of factor V (FV) and FVIII from the endoplasmic reticulum (ER) to the Golgi. Genetic deficiency of LMAN1 or MCFD2 in humans results in the moderate bleeding disorder combined FV and FVIII deficiency, with a similar phenotype previously observed in LMAN1-deficient mice. We now report that MCFD2-deficient mice generated by gene targeting also demonstrate reduced plasma FV and FVIII, with levels lower than those in LMAN1-deficient mice, similar to previous observations in LMAN1- and MCDF2-deficient humans. Surprisingly, FV and FVIII levels in doubly deficient mice match the higher levels observed in LMAN1-deficient mice. In contrast to the strain-specific partial lethality previously observed in LMAN1-null mice, MCFD2-null mice demonstrate normal survival in different genetic backgrounds, although doubly deficient mice exhibit partial embryonic lethality comparable to LMAN1-deficient mice. These results suggest that an alternative pathway is responsible for FV/FVIII secretion in doubly deficient mice and distinct cargo-specific functions for LMAN1 and MCFD2 within the ER-to-Golgi secretory pathway. We also observed decreased plasma levels of α1-antitrypsin (AAT) in male mice for all 3 groups of deficient mice. Comparable accumulation of AAT was observed in hepatocyte ER of singly and doubly deficient mice, demonstrating a role for LMAN1 and MCFD2 in efficient ER exit of AAT.
机译:LMAN1-MCFD2复合物可作为货物受体,有效地将因子V(FV)和FVIII从内质网(ER)转运至高尔基体。人类中LMAN1或MCFD2的遗传缺陷会导致中度出血性疾病,包括FV和FVIII缺陷,与先前在LMAN1缺陷小鼠中观察到的相似表型有关。现在我们报告通过基因靶向产生的MCFD2缺陷小鼠还显示血浆FV和FVIII降低,水平低于LMAN1缺陷小鼠中的水平,类似于LMAN1和MCDF2缺陷人类中的先前观察。出人意料的是,双倍缺乏小鼠中的FV和FVIII水平与LMAN1缺乏小鼠中观察到的更高水平相匹配。与先前在LMAN1-null小鼠中观察到的菌株特异性部分致死力相反,MCFD2-null小鼠在不同的遗传背景下表现出正常的存活率,尽管双倍缺陷小鼠表现出的部分胚胎致死率可与LMAN1缺陷小鼠相媲美。这些结果表明,另一种途径是造成双倍缺陷小鼠FV / FVIII分泌的原因,并且是ER至高尔基体分泌途径中LMAN1和MCFD2具有独特的货物特异性功能的原因。我们还观察到雄性小鼠的所有3组缺陷小鼠的血浆α1-抗胰蛋白酶(AAT)含量均降低。在单只和双倍缺陷小鼠的肝细胞内质网中观察到了相当数量的AAT积累,表明LMAN1和MCFD2在AAT有效内质网出口中的作用。

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