通过临床表型分析和模式生物发现剖析维生素B12代谢在颅面发育中的作用。

IF 2.2 3区 生物学 Q4 CELL BIOLOGY
Briana E Pinales, Carlos E Palomino, German Rosas-Acosta, Giulio Francia, Anita M Quintana
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引用次数: 0

摘要

维生素 B12 又称钴胺素,是一种必需的水溶性维生素,可从动物性食物中获取。编码负责钴胺素摄取、转运或加工的蛋白质的基因发生突变会导致钴胺素代谢先天性错误,这是一组以同型半胱氨酸和甲基丙二酸蓄积、神经发育缺陷、眼部功能障碍、贫血和发育不良为特征的疾病。已观察到轻度至中度的颅面表型,但这些表型并不完全具有穿透性,也未在文献中得到一致认可。然而,最近十年,两个钴胺症互补组 cblX 和 cblC 的动物模型都出现了颅面表型。这些数据表明了钴胺素在面部发育中的功能。在本综述中,我们对所有钴胺素互补群进行了文献综述,以确定哪些群和哪些人类变异与畸形特征、小头畸形或颅面表型有关。我们在 cblC、cblX、cblG、cblF 和 cblJ 中发现了畸形面部特征,它们分别是由 MMACHC、HCFC1、MTR、LMBRD1 和 ABCD4 突变引起的。其他互补组主要与小头畸形有关。cblC 和 cblX 的动物模型(斑马鱼和小鼠)支持这些临床表型,并证明了神经嵴细胞缺陷,包括神经嵴发育的关键分子标记 prdm1a、sox10 和 sox9 的表达减少。斑马鱼 mmachc 生殖突变体的特征也表明软骨细胞发育不典型。总之,这些数据证明了钴胺素在面部发育过程中的重要作用,未来有必要对钴胺素紊乱导致的人类面部表型的细胞和分子机制进行研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dissecting the role of vitamin B12 metabolism in craniofacial development through analysis of clinical phenotypes and model organism discoveries.

Vitamin B12, otherwise known as cobalamin, is an essential water-soluble vitamin that is obtained from animal derived dietary sources. Mutations in the genes that encode proteins responsible for cobalamin uptake, transport, or processing cause inborn errors of cobalamin metabolism, a group of disorders characterized by accumulation of homocysteine and methylmalonic acid, neurodevelopmental defects, ocular dysfunction, anemia, and failure to thrive. Mild to moderate craniofacial phenotypes have been observed but these phenotypes are not completely penetrant and have not been consistently recognized in the literature. However, in the most recent decade, animal models of cblX and cblC, two cobalamin disorder complementation groups, have documented craniofacial phenotypes. These data indicate a function for cobalamin in facial development. In this review, we performed a literature review of all cobalamin complementation groups to identify which groups, and which human variants, are associated with dysmorphic features, microcephaly, or marfanoid phenotypes. We identified dysmorphic facial features in cblC, cblX, cblG, cblF, and cblJ, which are caused by mutations in MMACHC, HCFC1, MTR, LMBRD1, and ABCD4, respectively. Other complementation groups were associated primarily with microcephaly. Animal models (zebrafish and mouse) of cblC and cblX support these clinical phenotypes and have demonstrated neural crest cell deficits that include reduced expression of prdm1a, sox10, and sox9, key molecular markers of neural crest development. Characterization of a zebrafish mmachc germline mutant also suggests atypical chondrocyte development. Collectively, these data demonstrate an essential role for cobalamin in facial development and warrant future mechanistic inquiries that dissect the cellular and molecular mechanisms underlying human facial phenotypes in cobalamin disorders.

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来源期刊
Differentiation
Differentiation 生物-发育生物学
CiteScore
4.10
自引率
3.40%
发文量
38
审稿时长
51 days
期刊介绍: Differentiation is a multidisciplinary journal dealing with topics relating to cell differentiation, development, cellular structure and function, and cancer. Differentiation of eukaryotes at the molecular level and the use of transgenic and targeted mutagenesis approaches to problems of differentiation are of particular interest to the journal. The journal will publish full-length articles containing original work in any of these areas. We will also publish reviews and commentaries on topics of current interest. The principal subject areas the journal covers are: • embryonic patterning and organogenesis • human development and congenital malformation • mechanisms of cell lineage commitment • tissue homeostasis and oncogenic transformation • establishment of cellular polarity • stem cell differentiation • cell reprogramming mechanisms • stability of the differentiated state • cell and tissue interactions in vivo and in vitro • signal transduction pathways in development and differentiation • carcinogenesis and cancer • mechanisms involved in cell growth and division especially relating to cancer • differentiation in regeneration and ageing • therapeutic applications of differentiation processes.
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