Transcript Profiles of Stria Vascularis in Models of Waardenburg Syndrome

Author:

Chen Linjun1,Wang Lin2,Chen Lei3,Wang Fangyuan1456,Ji Fei1456,Sun Wei7,Zhao Hui1456ORCID,Han Weiju1456ORCID,Yang Shiming1456ORCID

Affiliation:

1. College of Otolaryngology Head and Neck Surgery, Chinese PLA General Hospital, Beijing, China

2. Nursing Department, Hainan Hospital of Chinese PLA General Hospital, Sanya 572013, China

3. Chongqing Academy of Animal Science, Chongqing 402460, China

4. National Clinical Research Center for Otolaryngologic Diseases, Beijing, China

5. Key Lab of Hearing Science, Ministry of Education, China

6. Beijing Key Lab of Hearing Impairment for Prevention and Treatment, Beijing, China

7. Department of Communicative Disorders and Sciences, Center for Hearing and Deafness, The State University of New York at Buffalo, Buffalo, New York, USA

Abstract

Background. Waardenburg syndrome is an uncommon genetic condition characterized by at least some degree of congenital hearing loss and pigmentation deficiencies. However, the genetic pathway affecting the development of stria vascularis is not fully illustrated. Methods. The transcript profile of stria vascularis of Waardenburg syndrome was studied using Mitf-M mutant pig and mice models. Therefore, GO analysis was performed to identify the differential gene expression caused by Mitf-M mutation. Results. There were 113 genes in tyrosine metabolism, melanin formation, and ion transportations showed significant changes in pig models and 191 genes in mice models. In addition, there were some spice’s specific gene changes in the stria vascularis in the mouse and porcine models. The expression of tight junction-associated genes, including Cadm1, Cldn11, Pcdh1, Pcdh19, and Cdh24 genes, were significantly higher in porcine models compared to mouse models. Vascular-related and ion channel-related genes in the stria vascularis were also shown significantly difference between the two species. The expression of Col2a1, Col3a1, Col11a1, and Col11a2 genes were higher, and the expression of Col8a2, Cd34, and Ncam genes were lower in the porcine models compared to mouse models. Conclusions. Our data suggests that there is a significant difference on the gene expression and function between these two models.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

Clinical Neurology,Neurology

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