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PMID: 17450125 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

PTC124 targets genetic disorders caused by nonsense mutations.

Nature ·Vol. 447 ·No. 7140 ·2007-05-03 ·Pages 87-91

Welch EM, Barton ER, Zhuo J, Tomizawa Y, Friesen WJ, Trifillis P, Paushkin S, Patel M, Trotta CR, Hwang S, Wilde RG, Karp G, Takasugi J, Chen G, Jones S, Ren H, Moon YC, Corson D, Turpoff AA, Campbell JA, Conn MM, Khan A, Almstead NG, Hedrick J, Mollin A, Risher N, Weetall M, Yeh S, Branstrom AA, Colacino JM, Babiak J, Ju WD, Hirawat S, Northcutt VJ, Miller LL, Spatrick P, He F, Kawana M, Feng H, Jacobson A, Peltz SW, Sweeney HL

Abstract

Nonsense mutations promote premature translational termination and cause anywhere from 5-70% of the individual cases of most inherited diseases. Studies on nonsense-mediated cystic fibrosis have indicated that boosting specific protein synthesis from <1% to as little as 5% of normal levels may greatly reduce the severity or eliminate the principal manifestations of disease. To address the need for a drug capable of suppressing premature termination, we identified PTC124-a new chemical entity that selectively induces ribosomal readthrough of premature but not normal termination codons. PTC124 activity, optimized using nonsense-containing reporters, promoted dystrophin production in primary muscle cells from humans and mdx mice expressing dystrophin nonsense alleles, and rescued striated muscle function in mdx mice within 2-8 weeks of drug exposure. PTC124 was well tolerated in animals at plasma exposures substantially in excess of those required for nonsense suppression. The selectivity of PTC124 for premature termination codons, its well characterized activity profile, oral bioavailability and pharmacological properties indicate that this drug may have broad clinical potential for the treatment of a large group of genetic disorders with limited or no therapeutic options.

MeSH Terms
Alleles Animals Biological Availability Codon, Nonsense/genetics Dystrophin/biosynthesis,genetics Genetic Diseases, Inborn/blood,drug therapy,genetics Humans Mice Mice, Inbred mdx Oxadiazoles/administration & dosage,pharmacokinetics,pharmacology,therapeutic use Phenotype Protein Biosynthesis/drug effects,genetics RNA, Messenger/genetics,metabolism Substrate Specificity
Chemicals
Codon, Nonsense Dystrophin Oxadiazoles RNA, Messenger ataluren
Authors & Affiliations
42 authors, click to expand affiliations / ORCID
Welch Ellen M
PTC Therapeutics, 100 Corporate Court, South Plainfield, New Jersey 07080, USA.
Barton Elisabeth R
Zhuo Jin
Tomizawa Yuki
Friesen Westley J
Trifillis Panayiota
Paushkin Sergey
Patel Meenal
Trotta Christopher R
Hwang Seongwoo
Wilde Richard G
Karp Gary
Takasugi James
Chen Guangming
Jones Stephen
Ren Hongyu
Moon Young-Choon
Corson Donald
Turpoff Anthony A
Campbell Jeffrey A
Conn M Morgan
Khan Atiyya
Almstead Neil G
Hedrick Jean
Mollin Anna
Risher Nicole
Weetall Marla
Yeh Shirley
Branstrom Arthur A
Colacino Joseph M
Babiak John
Ju William D
Hirawat Samit
Northcutt Valerie J
Miller Langdon L
Spatrick Phyllis
He Feng
Kawana Masataka
Feng Huisheng
Jacobson Allan
Peltz Stuart W
Sweeney H Lee
Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2007-05-03
Epub
2007-00-22
Pages
87-91
Language
English
Region
England
NLM ID
0410462
Subset
IM
Grants
NIGMS NIH HHS · R01 GM027757 · United States
NIGMS NIH HHS · R37 GM027757 · United States
NICHD NIH HHS · R42 HD048137 · United States
Corrections
CommentIn
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