Cargando…

‘Double-muscling’ and pelvic tilt phenomena in rabbits with the cystine-knot motif deficiency of myostatin on exon 3

Gene mutations at different gene sites will produce totally different phenotypes or biological functions in gene-edited animals. An allelic series of mutations in the myostatin (MSTN) gene can cause the ‘double-muscling’ phenotype. Although there have been many studies performed on MSTN-mutant anima...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Ting, Lu, Yaoyao, Song, Shaozheng, Lu, Rui, Zhou, Minya, He, Zhengyi, Yuan, Tingting, Yan, Kunning, Cheng, Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6527932/
https://www.ncbi.nlm.nih.gov/pubmed/31072915
http://dx.doi.org/10.1042/BSR20190207
_version_ 1783420116237549568
author Zhang, Ting
Lu, Yaoyao
Song, Shaozheng
Lu, Rui
Zhou, Minya
He, Zhengyi
Yuan, Tingting
Yan, Kunning
Cheng, Yong
author_facet Zhang, Ting
Lu, Yaoyao
Song, Shaozheng
Lu, Rui
Zhou, Minya
He, Zhengyi
Yuan, Tingting
Yan, Kunning
Cheng, Yong
author_sort Zhang, Ting
collection PubMed
description Gene mutations at different gene sites will produce totally different phenotypes or biological functions in gene-edited animals. An allelic series of mutations in the myostatin (MSTN) gene can cause the ‘double-muscling’ phenotype. Although there have been many studies performed on MSTN-mutant animals, there have been few studies that have investigated the cystine-knot motif in exon 3 of MSTN in rabbits. In the current study, CRISPR/Cas9 sgRNA anchored exon 3 of a rabbit’s MSTN was used to disrupt the cystine-knot motif to change the MSTN construction and cause a loss of its function. Eleven MSTN-KO founder rabbits were generated, and all of them contained biallelic modifications. Various mutational MSTN amino acid sequences of the 11 founder rabbits were modeled to the tertiary structure using the SWISS-MODEL, and the results showed that the structure of the cystine-knot motif of each protein in the founder rabbits differed from the wild-type (WT). The MSTN-KO rabbits displayed an obvious ‘double-muscling’ phenomena, with a 20−30% increase in body weight compared with WT rabbits. In the MSTN-KO rabbits, all of the MSTN(−/−) rabbits showed teeth dislocation and tongue enlargement, and the percentage of rabbits having pelvic tilt was 0% in MSTN(+/+), 0% in MSTN(+/−), 77.78% in female MSTN(−/−) rabbits, and 37.50% in male MSTN(−/−) rabbits. The biomechanical mechanism of pelvic tilt and teeth dislocation in the MSTN-KO rabbits requires further investigation. These newly generated MSTN-KO rabbits will serve as an important animal model, not only for studying skeletal muscle development, but also for biomedical studies in pelvic tilt correction and craniofacial research.
format Online
Article
Text
id pubmed-6527932
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Portland Press Ltd.
record_format MEDLINE/PubMed
spelling pubmed-65279322019-05-30 ‘Double-muscling’ and pelvic tilt phenomena in rabbits with the cystine-knot motif deficiency of myostatin on exon 3 Zhang, Ting Lu, Yaoyao Song, Shaozheng Lu, Rui Zhou, Minya He, Zhengyi Yuan, Tingting Yan, Kunning Cheng, Yong Biosci Rep Research Articles Gene mutations at different gene sites will produce totally different phenotypes or biological functions in gene-edited animals. An allelic series of mutations in the myostatin (MSTN) gene can cause the ‘double-muscling’ phenotype. Although there have been many studies performed on MSTN-mutant animals, there have been few studies that have investigated the cystine-knot motif in exon 3 of MSTN in rabbits. In the current study, CRISPR/Cas9 sgRNA anchored exon 3 of a rabbit’s MSTN was used to disrupt the cystine-knot motif to change the MSTN construction and cause a loss of its function. Eleven MSTN-KO founder rabbits were generated, and all of them contained biallelic modifications. Various mutational MSTN amino acid sequences of the 11 founder rabbits were modeled to the tertiary structure using the SWISS-MODEL, and the results showed that the structure of the cystine-knot motif of each protein in the founder rabbits differed from the wild-type (WT). The MSTN-KO rabbits displayed an obvious ‘double-muscling’ phenomena, with a 20−30% increase in body weight compared with WT rabbits. In the MSTN-KO rabbits, all of the MSTN(−/−) rabbits showed teeth dislocation and tongue enlargement, and the percentage of rabbits having pelvic tilt was 0% in MSTN(+/+), 0% in MSTN(+/−), 77.78% in female MSTN(−/−) rabbits, and 37.50% in male MSTN(−/−) rabbits. The biomechanical mechanism of pelvic tilt and teeth dislocation in the MSTN-KO rabbits requires further investigation. These newly generated MSTN-KO rabbits will serve as an important animal model, not only for studying skeletal muscle development, but also for biomedical studies in pelvic tilt correction and craniofacial research. Portland Press Ltd. 2019-05-21 /pmc/articles/PMC6527932/ /pubmed/31072915 http://dx.doi.org/10.1042/BSR20190207 Text en © 2019 The Author(s). http://creativecommons.org/licenses/by/4.0/This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY) (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Articles
Zhang, Ting
Lu, Yaoyao
Song, Shaozheng
Lu, Rui
Zhou, Minya
He, Zhengyi
Yuan, Tingting
Yan, Kunning
Cheng, Yong
‘Double-muscling’ and pelvic tilt phenomena in rabbits with the cystine-knot motif deficiency of myostatin on exon 3
title ‘Double-muscling’ and pelvic tilt phenomena in rabbits with the cystine-knot motif deficiency of myostatin on exon 3
title_full ‘Double-muscling’ and pelvic tilt phenomena in rabbits with the cystine-knot motif deficiency of myostatin on exon 3
title_fullStr ‘Double-muscling’ and pelvic tilt phenomena in rabbits with the cystine-knot motif deficiency of myostatin on exon 3
title_full_unstemmed ‘Double-muscling’ and pelvic tilt phenomena in rabbits with the cystine-knot motif deficiency of myostatin on exon 3
title_short ‘Double-muscling’ and pelvic tilt phenomena in rabbits with the cystine-knot motif deficiency of myostatin on exon 3
title_sort ‘double-muscling’ and pelvic tilt phenomena in rabbits with the cystine-knot motif deficiency of myostatin on exon 3
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6527932/
https://www.ncbi.nlm.nih.gov/pubmed/31072915
http://dx.doi.org/10.1042/BSR20190207
work_keys_str_mv AT zhangting doublemusclingandpelvictiltphenomenainrabbitswiththecystineknotmotifdeficiencyofmyostatinonexon3
AT luyaoyao doublemusclingandpelvictiltphenomenainrabbitswiththecystineknotmotifdeficiencyofmyostatinonexon3
AT songshaozheng doublemusclingandpelvictiltphenomenainrabbitswiththecystineknotmotifdeficiencyofmyostatinonexon3
AT lurui doublemusclingandpelvictiltphenomenainrabbitswiththecystineknotmotifdeficiencyofmyostatinonexon3
AT zhouminya doublemusclingandpelvictiltphenomenainrabbitswiththecystineknotmotifdeficiencyofmyostatinonexon3
AT hezhengyi doublemusclingandpelvictiltphenomenainrabbitswiththecystineknotmotifdeficiencyofmyostatinonexon3
AT yuantingting doublemusclingandpelvictiltphenomenainrabbitswiththecystineknotmotifdeficiencyofmyostatinonexon3
AT yankunning doublemusclingandpelvictiltphenomenainrabbitswiththecystineknotmotifdeficiencyofmyostatinonexon3
AT chengyong doublemusclingandpelvictiltphenomenainrabbitswiththecystineknotmotifdeficiencyofmyostatinonexon3