Modeling of pigmentation disorders associated with MITF mutation in Waardenburg syndrome revealed an impaired melanogenesis pathway in iPS‐derived melanocytes

Author:

Wen Jie12,Song Jian34,Chen Jiale5ORCID,Feng Zhili12,Jing Qiancheng12,Gong Wei12,Kang Xiaoming12,Mei Lingyun34,He Chufeng34,Ma Lu26,Feng Yong1247ORCID

Affiliation:

1. Department of Otorhinolaryngology, The Affiliated Changsha Central Hospital, Hengyang Medical School University of South China Changsha China

2. Institute of Otorhinolaryngology, Head and Neck Surgery University of South China Changsha China

3. Department of Otorhinolaryngology Xiangya Hospital Central South University Changsha China

4. Province Key Laboratory of Otolaryngology Critical Diseases Changsha China

5. Hunan Key Laboratory of Medical Genetics, School of Life Sciences Central South University Changsha China

6. The Hengyang Key Laboratory of Cellular Stress Biology, Institute of Cytology and Genetics, Hengyang Medical School University of South China Hengyang China

7. Hengyang Medical School University of South China Hengyang China

Abstract

AbstractWaardenburg Syndrome (WS) is a rare genetic disorder that leads to congenital hearing loss and pigmentation defects. Microphthalmia‐associated transcription factor (MITF) is one of its significant pathogenic genes. Despite the comprehensive investigation in animal models, the pathogenic mechanism is still poorly described in humans due to difficulties accessing embryonic tissues. In this work, we used induced pluripotent stem cells derived from a WS patient carrying a heterozygous mutation in the MITF gene c.626A>T (p.His209Leu), and differentiated toward melanocyte lineage, which is the most affected cell type involved in WS. Compared with the wild‐type cell line, the MITFmut cell line showed a reduced expression of the characteristic melanocyte‐related genes and a lesser proportion of mature, fully pigmented melanosomes. The transcriptome analysis also revealed widespread gene expression changes at the melanocyte stage in the MITFmut cell line. The differentially expressed genes were enriched in melanogenesis and cell proliferation‐related pathways. Interestingly, ion transport‐related genes also showed a significant difference in MITFmut‐induced melanocytes, indicating that the MITF mutant may lead to the dysfunction of potassium channels and transporters produced by intermediate cells in the cochlea, further causing the associated phenotype of deafness. Altogether, our study provides valuable insights into how MITF mutation affects WS patients, which might result in defective melanocyte development and the related phenotype based on the patient‐derived iPSC model.

Funder

National Natural Science Foundation of China

Major State Basic Research Development Program of China

National Key Research and Development Program of China

Publisher

Wiley

Subject

Dermatology,General Biochemistry, Genetics and Molecular Biology,Oncology

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