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7p21.2处突变产生的表型似乎因 和 处新的复合杂合变体而减弱。

Phenotype from Mutation at 7p21.2 Appears Attenuated by Novel Compound Heterozygous Variants at and .

作者信息

Sills E Scott, Wood Samuel H

机构信息

Reproductive Research Section, Center for Advanced Genetics, San Clemente, California, United States.

Department of Obstetrics & Gynecology, Palomar Medical Center, Escondido, California, United States.

出版信息

Glob Med Genet. 2022 Jun 13;9(2):124-128. doi: 10.1055/s-0041-1740018. eCollection 2022 Jun.

Abstract

Sterile α motif domain-containing protein 9 (SAMD9) is a regulatory protein centrally involved in cell proliferation and apoptosis. Mapped to 7p21.2, variants in have been reported in <50 pediatric cases worldwide, typically with early lethality. Germline gain-of-function variants are associated with MIRAGE syndrome (myelodysplasia, infection, restricted growth, adrenal hypoplasia, genital anomalies, and enteropathy). Spalt like transcription factor 1 (SALL1) is a zinc finger transcriptional repressor located at 16q12.1 where only two transcript variants in are known. (6p21.1) encodes a nuclear protein with a Runt DNA-binding domain critical for osteoblastic differentiation, skeletal morphogenesis, and serves as a scaffold for nucleic acids and regulatory factors involved in skeletal gene expression. RUNX2 and SALL1 are thus both "master regulators" of tissue organization and embryo development. Here, we describe exome sequencing and copy number variants in two previously unknown mutations-R824Q in SAMD9, and Q253H in SALL1. A multiexon 3' terminal duplication of not previously encountered is also reported. This is the first known phenotype assessment for an intersection of all three variants in a healthy 46,XX adult. Focusing on developmental progress, ultrastructural renal anatomy, and selected reproductive aspects, we describe this unique genotype diagnosed incidentally during coronavirus disease 2019 (COVID-19) illness. Individually, disruption in or would be expected to give a bleak prognosis. However, this variant convergence appears to dampen severe pathology perhaps by cross-gene silencing of effects normally deleterious when such changes occur alone.

摘要

含无菌α基序结构域蛋白9(SAMD9)是一种调控蛋白,在细胞增殖和凋亡中起核心作用。该基因定位于7p21.2,全球报道的50例以下儿科病例中存在其变异,通常具有早期致死性。种系功能获得性变异与MIRAGE综合征(骨髓发育异常、感染、生长受限、肾上腺发育不全、生殖器异常和肠病)相关。类Spalt转录因子1(SALL1)是一种锌指转录抑制因子,位于16q12.1,已知该基因只有两种转录变体。(6p21.1)编码一种核蛋白,其具有对成骨细胞分化、骨骼形态发生至关重要的Runt DNA结合结构域,并作为参与骨骼基因表达的核酸和调控因子的支架。因此,RUNX2和SALL1都是组织组织和胚胎发育的“主调控因子”。在这里,我们描述了两个先前未知突变——SAMD9中的R824Q和SALL1中的Q253H的外显子测序和拷贝数变异。还报道了一个以前未见过的多外显子3'末端重复。这是首次对一名健康46,XX成年女性中所有三种变异的交集进行已知的表型评估。聚焦于发育进程、肾脏超微结构解剖以及选定的生殖方面,我们描述了在2019冠状病毒病(COVID-19)患病期间偶然诊断出的这种独特基因型。单独来看,或的破坏预计会导致预后不佳。然而,这种变异汇聚似乎可能通过对单独发生此类变化时通常有害的效应进行跨基因沉默来减轻严重病理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b33b/9192166/ccdf53fefa7c/10-1055-s-0041-1740018-i2100050-1.jpg

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