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在一头患有先天性心脏畸形和外翻腕的荷斯坦犊牛中鉴定BRI3BP基因的一个新生错义变异。

Identification of a de novo missense variant in the BRI3BP gene in a Holstein calf with congenital cardiac malformation and carpus valgus.

作者信息

He Chang, Grau-Roma Llorenç, Schmid Robin, Häfliger Irene M, Meylan Mireille, Drögemüller Cord, Jacinto Joana G P

机构信息

Institute of Animal Pathology, Vetsuisse Faculty, University of Bern, Bern, Switzerland.

Department of Infectious Diseases and Pathobiology, Vetsuisse Faculty, University of Bern, Bern, Switzerland.

出版信息

Anim Genet. 2025 Feb;56(1):e13494. doi: 10.1111/age.13494. Epub 2024 Nov 26.

DOI:10.1111/age.13494
PMID:39593234
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11666921/
Abstract

Congenital malformations in cattle pose a diagnostic challenge with limited treatment options and are often associated with a guarded prognosis. The aim of this study was to characterize the clinicopathological phenotype of a viable calf with complex congenital heart defects and carpus valgus, and to identify a possible genetic cause using a whole genome sequencing trio approach. A 3-month-old female Holstein calf was referred for respiratory distress and congenital carpal deviation. Clinicopathologic findings included ventricular septal defect, ventricular dilatation, atrioventricular valve dysplasia, an overriding aorta, and unilateral carpus valgus. Genetic analysis revealed a private heterozygous missense variant in BRI3BP affecting an evolutionarily conserved residue (c.478G>A; p.Val160Ile). The variant was predicted to be deleterious and was present only in the affected calf and was absent in more than 5100 sequenced bovine genomes, including both parents, indicating a de novo origin. This study implicates an important role for the uncharacterized BRI3 binding protein in cardiac and possibly also bone development. By presenting the first BRI3BP-related disease model, this study demonstrates the potential to gain new insights into the function of individual genes by using phenotypically well-studied spontaneous mutants in large animals, and it provides a novel candidate gene for similar conditions in humans.

摘要

牛的先天性畸形带来了诊断挑战,治疗选择有限,且往往预后不佳。本研究的目的是描述一头患有复杂先天性心脏缺陷和外翻腕的存活小牛的临床病理表型,并使用全基因组测序三人组方法确定可能的遗传原因。一头3个月大的雌性荷斯坦小牛因呼吸窘迫和先天性腕关节畸形被转诊。临床病理检查结果包括室间隔缺损、心室扩张、房室瓣发育异常、主动脉骑跨和单侧外翻腕。基因分析显示,BRI3BP基因存在一个私人杂合错义变异,影响一个进化保守残基(c.478G>A;p.Val160Ile)。该变异预计具有有害性,仅存在于患病小牛中,在包括双亲在内的5100多个已测序牛基因组中均未出现,表明其为新发突变。本研究表明,未表征的BRI3结合蛋白在心脏发育以及可能的骨骼发育中起重要作用。通过展示首个与BRI3BP相关的疾病模型,本研究证明了利用大型动物中经过充分表型研究的自发突变体来深入了解单个基因功能的潜力,并为人类类似病症提供了一个新的候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc3d/11666921/89272eeeb863/AGE-56-0-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc3d/11666921/938cee44831d/AGE-56-0-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc3d/11666921/89272eeeb863/AGE-56-0-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc3d/11666921/938cee44831d/AGE-56-0-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc3d/11666921/89272eeeb863/AGE-56-0-g002.jpg

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DYT- dystonia: an update on pathogenesis and treatment.DYT - 肌张力障碍:发病机制与治疗的最新进展
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The clinical and genetic spectrum of autosomal-recessive TOR1A-related disorders.
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Brain. 2023 Aug 1;146(8):3273-3288. doi: 10.1093/brain/awad039.
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Pharos 2023: an integrated resource for the understudied human proteome.Pharos 2023:一个针对人类蛋白质组中未被充分研究的部分的综合资源。
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Detailed analysis of mortality rates in the female progeny of 1,001 Holstein bulls allows the discovery of new dominant genetic defects.对 1001 头荷斯坦公牛的雌性后代的死亡率进行详细分析,可以发现新的显性遗传缺陷。
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A germline de novo variant in NUMB associated with a double-outlet right ventricle in Chianina cattle.与契安尼纳牛右心室双出口相关的NUMB基因种系新生变异。
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