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犬血红蛋白基因的比较基因组学揭示了成年食肉动物中β亚基δ的首要地位。

Comparative genomics of canine hemoglobin genes reveals primacy of beta subunit delta in adult carnivores.

作者信息

Zaldívar-López Sara, Rowell Jennie L, Fiala Elise M, Zapata Isain, Couto C Guillermo, Alvarez Carlos E

机构信息

Center for Molecular and Human Genetics, The Research Institute at Nationwide Children's Hospital, Columbus, OH, USA.

College of Veterinary Medicine, The Ohio State University, Columbus, OH, USA.

出版信息

BMC Genomics. 2017 Feb 8;18(1):141. doi: 10.1186/s12864-017-3513-0.

Abstract

BACKGROUND

The main function of hemoglobin (Hb) is to transport oxygen in the circulation. It is among the most highly studied proteins due to its roles in physiology and disease, and most of our understanding derives from comparative research. There is great diversity in Hb gene evolution in placental mammals, mostly in the repertoire and regulation of the β-globin subunits. Dogs are an ideal model in which to study Hb genes because: 1) they are members of Laurasiatheria, our closest relatives outside of Euarchontoglires (including primates, rodents and rabbits), 2) dog breeds are isolated populations with their own Hb-associated genetics and diseases, and 3) their high level of health care allows for development of biomedical investigation and translation.

RESULTS

We established that dogs have a complement of five α and five β-globin genes, all of which can be detected as spliced mRNA in adults. Strikingly, HBD, the allegedly-unnecessary adult β-globin protein in humans, is the primary adult β-globin in dogs and other carnivores; moreover, dogs have two active copies of the HBD gene. In contrast, the dominant adult β-globin of humans, HBB, has high sequence divergence and is expressed at markedly lower levels in dogs. We also showed that canine HBD and HBB genes are complex chimeras that resulted from multiple gene conversion events between them. Lastly, we showed that the strongest signal of evolutionary selection in a high-altitude breed, the Bernese Mountain Dog, lies in a haplotype block that spans the β-globin locus.

CONCLUSIONS

We report the first molecular genetic characterization of Hb genes in dogs. We found important distinctions between adult β-globin expression in carnivores compared to other members of Laurasiatheria. Our findings are also likely to raise new questions about the significance of human HBD. The comparative genomics of dog hemoglobin genes sets the stage for diverse research and translation.

摘要

背景

血红蛋白(Hb)的主要功能是在循环系统中运输氧气。由于其在生理学和疾病中的作用,它是研究最为深入的蛋白质之一,我们对它的大部分了解都来自比较研究。胎盘哺乳动物的Hb基因进化具有很大的多样性,主要体现在β-珠蛋白亚基的组成和调控方面。狗是研究Hb基因的理想模型,原因如下:1)它们是劳亚兽总目的成员,是真灵长总目(包括灵长类、啮齿动物和兔子)之外与我们亲缘关系最近的动物;2)犬种是具有自身与Hb相关的遗传学和疾病的隔离群体;3)它们高水平的医疗保健有利于生物医学研究和转化的开展。

结果

我们确定狗有五个α-珠蛋白基因和五个β-珠蛋白基因,所有这些基因在成年狗中都能被检测为剪接后的mRNA。引人注目的是,人类中所谓不必要的成年β-珠蛋白HBD,是狗和其他食肉动物的主要成年β-珠蛋白;此外,狗有两个活跃的HBD基因拷贝。相比之下,人类占主导地位的成年β-珠蛋白HBB,在狗中的序列差异很大,且表达水平明显较低。我们还表明,犬类HBD和HBB基因是复杂的嵌合体,是由它们之间的多次基因转换事件导致的。最后,我们表明,在高海拔品种伯恩山犬中,进化选择的最强信号位于跨越β-珠蛋白基因座的单倍型块中。

结论

我们报告了狗Hb基因的首次分子遗传学特征。我们发现食肉动物成年β-珠蛋白表达与劳亚兽总目的其他成员相比存在重要差异。我们的发现也可能引发关于人类HBD意义的新问题。狗血红蛋白基因的比较基因组学为多样化的研究和转化奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78da/5299747/96c48fdc1b4f/12864_2017_3513_Fig1_HTML.jpg

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