Laboratorio de Morfología Celular y Molecular, Sección de Estudios de Posgrado e Investigación, Instituto Politécnico Nacional, Escuela Superior de Medicina, Ciudad de México 11340, Mexico.
Instituto Nacional de Perinatología, Seguimiento Pediátrico, Ciudad de México 11000, Mexico.
Int J Mol Sci. 2021 Jul 27;22(15):8039. doi: 10.3390/ijms22158039.
is a gene coding for a protein kinase that targets S-X-E/pS motifs on different phosphoproteins belonging to diverse tissues. Pathogenic variants of are responsible for Raine syndrome (RS), initially described as a lethal and congenital osteosclerotic dysplasia characterized by generalized atherosclerosis with periosteal bone formation, characteristic facial dysmorphisms and intracerebral calcifications. The aim of this review is to give an overview of targets and variants of FAM20C as well as RS aspects. We performed a wide phenotypic review focusing on clinical aspects and differences between all lethal (LRS) and non-lethal (NLRS) reported cases, besides the pathogenic variant description for each. As new targets of FAM20C kinase have been identified, we reviewed FAM20C targets and their functions in bone and other tissues, with emphasis on novel targets not previously considered. We found the classic lethal and milder non-lethal phenotypes. The milder phenotype is defined by a large spectrum ranging from osteonecrosis to osteosclerosis with additional congenital defects or intellectual disability in some cases. We discuss our current understanding of FAM20C deficiency, its mechanism in RS through classic FAM20C targets in bone tissue and its potential biological relevance through novel targets in non-bone tissues.
是一种编码蛋白激酶的基因,该激酶可靶向属于不同组织的不同磷酸化蛋白上的 S-X-E/pS 基序。的致病变体负责 Raine 综合征 (RS),最初被描述为一种致命的先天性骨质硬化性骨发育不良,其特征为全身性动脉粥样硬化伴骨膜骨形成、特征性面部畸形和颅内钙化。本综述的目的是概述 FAM20C 的靶标和变体以及 RS 方面。我们进行了广泛的表型综述,重点关注所有致死性 (LRS) 和非致死性 (NLRS) 报道病例的临床方面和差异,以及对每个病例的致病性变体描述。由于已经确定了 FAM20C 激酶的新靶标,我们综述了 FAM20C 的靶标及其在骨骼和其他组织中的功能,重点介绍了以前未被考虑过的新靶标。我们发现了经典的致死性和更温和的非致死性表型。更温和的表型定义为从骨坏死到骨硬化的广泛范围,在某些情况下伴有其他先天性缺陷或智力障碍。我们讨论了我们目前对 FAM20C 缺乏的理解,通过骨骼组织中的经典 FAM20C 靶标了解其在 RS 中的作用机制,以及通过非骨骼组织中的新靶标了解其潜在的生物学相关性。