연구논문

세부과제번호 2014M3A9D5A01073969 단계 1단계 3차년도
세부과제명 희귀유전질환인 섬모질환 마우스 동물 모델 표현형 분석 공동 유/무 Y
SCI여부 Y 게재년월 2016-8
논문제목 An inactivating mutation in intestinal cell kinase, ICK, impairs hedgehog signalling and causes short rib-polydactyly syndrome.
총저자명 S Paige TaylorMichaela Kunova BosakovaMiroslav VarechaLukas BalekTomas BartaLukas TrantirekIva JelinkovaIvan DuranIva VeselaKimberly N ForlenzaJorge H MartinAles Hampl Michael BamshadDeborah NickersonMargie L JaworskiJieun SongHyuk Wan KoDaniel H CohnDebo
학술지명 Hum. Mol. Genet. 게재권(호) ()
저널구분 - 페이지수 -
참여연구원 고혁완 연구책임자 고혁완
과제기여도 20 PMID 27466187
사사기관수 - IF (년도) 6.393
제1저자 S. Paige Taylor 교신저자 Pavel Krejci
공동저자 -
초록
The short rib polydactyly syndromes (SRPS) are a group of recessively inherited, perinatal-lethal skeletal disorders primarily characterized by short ribs, shortened long bones, varying types of polydactyly and concomitant visceral abnormalities. Mutations in several genes affecting cilia function cause SRPS, revealing a role for cilia function in skeletal development. To identify additional SRPS genes and discover novel ciliary molecules required for normal skeletogenesis, we performed exome sequencing in a cohort of patients and identified homozygosity for a missense mutation, p.E80K, in Intestinal Cell Kinase, ICK, in one SRPS family. The p.E80K mutation abolished serine/threonine kinase activity, resulting in altered ICK subcellular and ciliary localization, increased cilia length, aberrant cartilage growth plate structure, defective Hedgehog and altered ERK signalling. These data identify ICK as an SRPS-associated gene and reveal that abnormalities in signalling pathways contribute to defective skeletogenesis.
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