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Identification of the Mitf gene mutation causing congenital deafness and pigmentation disorders in porcupines using
Kang Li1, Chunmao Huo1, Hong Long1
1Zunyi Medical University, Zunyi, China.
Abstract:
Worldwide, congenital deafness and pigmentation disorders impact millions with their diverse manifestations, and among these genetic conditions, mutations in the Microphthalmia-associated transcription factor (MITF: OMIM#156845) gene are notable for their profound effects on melanocyte development and auditory functions. This study reports a novel porcupine model exhibiting spontaneous deafness and pigmentation abnormalities reminiscent of human Waardenburg Syndrome Type 2 (WS2: OMIM#193510). Through phenotypic characterization, including coat color, skin, eye morphology, and auditory brainstem response (ABR) assessments, we identified hypopigmentation and complete deafness in mutant porcupines. To pinpoint the genetic basis, a breeding program was established, and Bulk Segregant Analysis (BSA) combined with RNA sequencing was conducted. Primers based on the identified candidate genes were designed for PCR amplification, followed by verification through Sanger sequencing. Through BSA analysis, we identified a total of 88 SNP and 336 InDel candidate sites. By annotating the Mitf gene, we obtained four unique transcript sequences. The SNP and InDel sites within the porcupine Mitf gene sequence, identified through BSA screening, were analyzed in conjunction with the gene's annotation results. This analysis revealed a specific mutation site, Mitf c.875_877delGAA p. (Arg217del), which was subsequently verified by Sanger sequencing. This naturally occurring Mitf mutation in porcupines provides a valuable model for studying the mechanisms underlying WS2 and exploring potential therapeutic strategies for deafness and pigmentation-related disorders.
Insights
A novel porcupine model with spontaneous deafness and pigmentation issues reveals a Microphthalmia-associated transcription factor (MITF) gene mutation. This discovery offers a valuable model for studying Waardenburg Syndrome Type 2 and related disorders.
Area of Science:
- Genetics
- Developmental Biology
- Auditory Science
Background:
- Congenital deafness and pigmentation disorders affect millions globally.
- Mutations in the Microphthalmia-associated transcription factor (MITF) gene are linked to melanocyte development and auditory function deficits.
- Waardenburg Syndrome Type 2 (WS2) is a genetic condition characterized by hearing loss and pigmentary abnormalities.
Purpose of the Study:
- To report a novel porcupine model with spontaneous deafness and pigmentation abnormalities.
- To identify the genetic basis of these abnormalities in porcupines.
- To establish a valuable animal model for studying WS2 and related human disorders.
Main Methods:
- Phenotypic characterization of mutant porcupines (coat color, skin, eye morphology, auditory brainstem response).
- Breeding program establishment for genetic analysis.
- Bulk Segregant Analysis (BSA) combined with RNA sequencing to identify candidate genes.
- PCR amplification and Sanger sequencing for mutation verification.
Main Results:
- Mutant porcupines exhibited hypopigmentation and complete deafness.
- BSA identified 88 SNP and 336 InDel candidate sites.
- A novel mutation in the porcupine Mitf gene, c.875_877delGAA (p.Arg217del), was identified and verified.
Conclusions:
- A naturally occurring Mitf mutation in porcupines mimics human WS2.
- This porcupine model is valuable for investigating WS2 mechanisms.
- The model can aid in exploring therapeutic strategies for deafness and pigmentation disorders.

