Institute of Experimental Haematology and Transfusion Medicine, Venusberg Campus 1, University Clinic Bonn, 53127 Bonn, Germany.
Center for Rare Diseases Bonn, Venusberg Campus 1, University Clinic Bonn, 53127 Bonn, Germany.
Int J Mol Sci. 2022 Jan 12;23(2):798. doi: 10.3390/ijms23020798.
Vitamin K dependent coagulation factor deficiency type 1 (VKCFD1) is a rare hereditary bleeding disorder caused by mutations in γ-Glutamyl carboxylase () gene. The GGCX enzyme catalyzes the γ-carboxylation of 15 different vitamin K dependent (VKD) proteins, which have function in blood coagulation, calcification, and cell signaling. Therefore, in addition to bleedings, some VKCFD1 patients develop diverse non-hemorrhagic phenotypes such as skin hyper-laxity, skeletal dysmorphologies, and/or cardiac defects. Recent studies showed that mutations differentially effect γ-carboxylation of VKD proteins, where clotting factors are sufficiently γ-carboxylated, but not certain non-hemostatic VKD proteins. This could be one reason for the development of diverse phenotypes. The major manifestation of non-hemorrhagic phenotypes in VKCFD1 patients are mineralization defects. Therefore, the mechanism of regulation of calcification by specific VKD proteins as matrix Gla protein (MGP) and Gla-rich protein (GRP) in physiological and pathological conditions is of high interest. This will also help to understand the patho-mechanism of VKCFD1 phenotypes and to deduce new treatment strategies. In the present review article, we have summarized the recent findings on the function of GRP and MGP and how these proteins influence the development of non-hemorrhagic phenotypes in VKCFD1 patients.
维生素 K 依赖性凝血因子缺乏症 1 型(VKCFD1)是一种罕见的遗传性出血性疾病,由 γ-谷氨酸羧化酶()基因的突变引起。GGCX 酶催化 15 种不同的维生素 K 依赖性(VKD)蛋白的 γ-羧化作用,这些蛋白在血液凝固、钙化和细胞信号转导中具有功能。因此,除了出血外,一些 VKCFD1 患者还会出现多种非出血性表型,如皮肤过度松弛、骨骼发育畸形和/或心脏缺陷。最近的研究表明,突变会导致 VKD 蛋白的 γ-羧化作用产生差异,其中凝血因子得到充分的 γ-羧化,但某些非止血性 VKD 蛋白则没有。这可能是导致多种表型发生的原因之一。VKCFD1 患者的非出血性表型的主要表现是矿化缺陷。因此,特定 VKD 蛋白(如基质 Gla 蛋白(MGP)和富含 Gla 蛋白(GRP))在生理和病理条件下调节钙化的机制具有很高的研究价值。这也有助于理解 VKCFD1 表型的病理机制,并推导出新的治疗策略。在本综述文章中,我们总结了最近关于 GRP 和 MGP 功能的发现,以及这些蛋白如何影响 VKCFD1 患者非出血性表型的发展。