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An internal promoter underlies the difference in disease severity between N- and C-terminal truncation mutations of Titin in zebrafish

Authors :
Zou, Jun
Tran, Diana
Baalbaki, Mai
Tang, Ling Fung
Poon, Annie
Pelonero, Angelo
Titus, Erron W
Yuan, Christiana
Shi, Chenxu
Patchava, Shruthi
Halper, Elizabeth
Garg, Jasmine
Movsesyan, Irina
Yin, Chaoying
Wu, Roland
Wilsbacher, Lisa D
Liu, Jiandong
Hager, Ronald L
Coughlin, Shaun R
Jinek, Martin
Pullinger, Clive R
Kane, John P
Hart, Daniel O
Kwok, Pui-Yan
Deo, Rahul C
Zou, Jun
Tran, Diana
Baalbaki, Mai
Tang, Ling Fung
Poon, Annie
Pelonero, Angelo
Titus, Erron W
Yuan, Christiana
Shi, Chenxu
Patchava, Shruthi
Halper, Elizabeth
Garg, Jasmine
Movsesyan, Irina
Yin, Chaoying
Wu, Roland
Wilsbacher, Lisa D
Liu, Jiandong
Hager, Ronald L
Coughlin, Shaun R
Jinek, Martin
Pullinger, Clive R
Kane, John P
Hart, Daniel O
Kwok, Pui-Yan
Deo, Rahul C
Source :
Zou, Jun; Tran, Diana; Baalbaki, Mai; Tang, Ling Fung; Poon, Annie; Pelonero, Angelo; Titus, Erron W; Yuan, Christiana; Shi, Chenxu; Patchava, Shruthi; Halper, Elizabeth; Garg, Jasmine; Movsesyan, Irina; Yin, Chaoying; Wu, Roland; Wilsbacher, Lisa D; Liu, Jiandong; Hager, Ronald L; Coughlin, Shaun R; Jinek, Martin; Pullinger, Clive R; Kane, John P; Hart, Daniel O; Kwok, Pui-Yan; Deo, Rahul C (2015). An internal promoter underlies the difference in disease severity between N- and C-terminal truncation mutations of Titin in zebrafish. eLife, 4:e09406.
Publication Year :
2015

Abstract

Truncating mutations in the giant sarcomeric protein Titin result in dilated cardiomyopathy and skeletal myopathy. The most severely affected dilated cardiomyopathy patients harbor Titin truncations in the C-terminal two-thirds of the protein, suggesting that mutation position might influence disease mechanism. Using CRISPR/Cas9 technology, we generated six zebrafish lines with Titin truncations in the N-terminal and C-terminal regions. Although all exons were constitutive, C-terminal mutations caused severe myopathy whereas N-terminal mutations demonstrated mild phenotypes. Surprisingly, neither mutation type acted as a dominant negative. Instead, we found a conserved internal promoter at the precise position where divergence in disease severity occurs, with the resulting protein product partially rescuing N-terminal truncations. In addition to its clinical implications, our work may shed light on a long-standing mystery regarding the architecture of the sarcomere.

Details

Database :
OAIster
Journal :
Zou, Jun; Tran, Diana; Baalbaki, Mai; Tang, Ling Fung; Poon, Annie; Pelonero, Angelo; Titus, Erron W; Yuan, Christiana; Shi, Chenxu; Patchava, Shruthi; Halper, Elizabeth; Garg, Jasmine; Movsesyan, Irina; Yin, Chaoying; Wu, Roland; Wilsbacher, Lisa D; Liu, Jiandong; Hager, Ronald L; Coughlin, Shaun R; Jinek, Martin; Pullinger, Clive R; Kane, John P; Hart, Daniel O; Kwok, Pui-Yan; Deo, Rahul C (2015). An internal promoter underlies the difference in disease severity between N- and C-terminal truncation mutations of Titin in zebrafish. eLife, 4:e09406.
Notes :
application/pdf, info:doi/10.5167/uzh-118340, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn942509207
Document Type :
Electronic Resource