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归因于赫里福德牛中隐性突变的下颌面发育不良。

Mandibulofacial Dysostosis Attributed to a Recessive Mutation of in Hereford Cattle.

机构信息

Department of Animal Science, University of Nebraska-Lincoln, Lincoln, NE 68583, USA.

American Hereford Association, Breed Improvement, Kansas City, MO 64048, USA.

出版信息

Genes (Basel). 2020 Oct 22;11(11):1246. doi: 10.3390/genes11111246.

Abstract

In spring 2020, six Hereford calves presented with congenital facial deformities attributed to a condition we termed mandibulofacial dysostosis (MD). Affected calves shared hallmark features of a variably shortened and/or asymmetric lower mandible and bilateral skin tags present 2-10 cm caudal to the commissure of the lips. Pedigree analysis revealed a single common ancestor shared by the sire and dam of each affected calf. Whole-genome sequencing (WGS) of 20 animals led to the discovery of a variant (Chr26 g. 14404993T>C) in Exon 3 of associated with MD. This missense mutation (p.L188P), is located in an α helix of the protein, which the identified amino acid substitution is predicted to break. The implication of this mutation was further validated through genotyping 2 additional affected calves, 760 other Herefords, and by evaluation of available WGS data from over 2500 other individuals. Only the affected individuals were homozygous for the variant and all heterozygotes had at least one pedigree tie to the suspect founder. plays a vital role in tissue-specific regulation of retinoic acid (RA) during embryonic development. Dysregulation of RA can result in teratogenesis by altering the endothelin-1 signaling pathway affecting the expression of genes, critical to mandibulofacial development. We postulate that this recessive missense mutation in impacts the catalytic activity of the encoded enzyme, leading to excess RA resulting in the observed MD phenotype.

摘要

2020 年春季,六头赫里福德小牛出现先天性面部畸形,我们将其归因于一种称为下颌面骨发育不全症(MD)的疾病。受影响的小牛具有以下共同特征:下颌骨不同程度缩短和/或不对称,以及在唇联合下方 2-10 厘米处存在双侧皮肤标签。系谱分析显示,受影响小牛的父本和母本具有单一的共同祖先。对 20 只动物进行全基因组测序(WGS)发现,与 MD 相关的 基因外显子 3 中存在一个变体(Chr26 g.14404993T>C)。该错义突变(p.L188P)位于该蛋白的α螺旋中,所鉴定的氨基酸取代被预测会破坏该螺旋。通过对另外 2 头受影响小牛、760 头其他赫里福德牛进行基因分型,并评估来自 2500 多个其他个体的可用 WGS 数据,进一步验证了该突变的影响。只有受影响的个体是该变异的纯合子,所有杂合子至少与可疑的奠基者有一个系谱联系。在胚胎发育过程中, 在组织特异性的维甲酸(RA)调控中发挥着重要作用。RA 的失调会通过改变内皮素-1 信号通路,影响到对下颌面发育至关重要的 基因的表达,从而导致致畸。我们推测, 基因中的这种隐性错义突变会影响编码酶的催化活性,导致 RA 过量,从而导致观察到的 MD 表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f6e/7690606/6696164120d4/genes-11-01246-g001.jpg

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