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患有鼻角化不全的灵缇犬SUV39H2基因中的一个剪接位点变异。

A splice site variant in the SUV39H2 gene in Greyhounds with nasal parakeratosis.

作者信息

Bauer A, Nimmo J, Newman R, Brunner M, Welle M M, Jagannathan V, Leeb T

机构信息

Institute of Genetics, Vetsuisse Faculty, University of Bern, 3001, Bern, Switzerland.

DermFocus, University of Bern, 3001, Bern, Switzerland.

出版信息

Anim Genet. 2018 Apr;49(2):137-140. doi: 10.1111/age.12643. Epub 2018 Feb 9.

Abstract

Hereditary nasal parakeratosis (HNPK), described in the Labrador Retriever breed, is a monogenic autosomal recessive disorder that causes crusts and fissures on the nasal planum of otherwise healthy dogs. Our group previously showed that this genodermatosis may be caused by a missense variant located in the SUV39H2 gene encoding a histone 3 lysine 9 methyltransferase, a chromatin modifying enzyme with a potential role in keratinocyte differentiation. In the present study, we investigated a litter of Greyhounds in which six out of eight puppies were affected with parakeratotic lesions restricted to the nasal planum. Clinically and histologically, the lesions were comparable to HNPK in Labrador Retrievers. Whole genome sequencing of one affected Greyhound revealed a 4-bp deletion at the 5'-end of intron 4 of the SUV39H2 gene that was absent in 188 control dog and three wolf genomes. The variant was predicted to disrupt the 5'-splice site with subsequent loss of SUV39H2 function. The six affected puppies were homozygous for the variant, whereas the two non-affected littermates were heterozygous. Genotyping of a larger cohort of Greyhounds revealed that the variant is segregating in the breed and that this breed might benefit from genetic testing to avoid carrier × carrier matings.

摘要

遗传性鼻角化不全(HNPK)在拉布拉多寻回犬品种中有所描述,是一种单基因常染色体隐性疾病,会导致原本健康的犬只鼻平面出现结痂和裂缝。我们的团队之前表明,这种遗传性皮肤病可能由位于SUV39H2基因中的一个错义变体引起,该基因编码一种组蛋白3赖氨酸9甲基转移酶,这是一种染色质修饰酶,在角质形成细胞分化中可能发挥作用。在本研究中,我们调查了一窝灵缇犬,其中八只幼犬中有六只受到仅限于鼻平面的角化不全性病变影响。在临床和组织学上,这些病变与拉布拉多寻回犬的HNPK相似。对一只患病灵缇犬进行全基因组测序发现,SUV39H2基因内含子4的5'端有一个4碱基缺失,在188只对照犬和三个狼基因组中均未出现。该变体预计会破坏5'剪接位点,随后导致SUV39H2功能丧失。六只患病幼犬为该变体的纯合子,而两只未患病的同窝幼犬为杂合子。对更大一批灵缇犬进行基因分型发现,该变体在该品种中呈分离状态,并且该品种可能会受益于基因检测,以避免携带×携带交配。

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