Functional and structural studies of wild type SOX9 and mutations causing campomelic dysplasia

被引:100
作者
McDowall, S [1 ]
Argentaro, A
Ranganathan, S
Weller, P
Mertin, S
Mansour, S
Tolmie, J
Harley, V
机构
[1] Univ Melbourne, Howard Florey Inst Expt Physiol & Med, Parkville, Vic 3052, Australia
[2] Univ Sydney, Australian Genom Informat Ctr, Sydney, NSW 2006, Australia
[3] Incyte Genet, Cambridge CB4 4WA, England
[4] St George Hosp, Sch Med, Dept Clin Genet, London SW17 0RE, England
[5] Yorkhill Hosp Natl Hlth Serv Trust, Dept Med Genet, Glasgow G3 8SJ, Lanark, Scotland
关键词
D O I
10.1074/jbc.274.34.24023
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In humans, mutations in SOX9 result in a skeletal malformation syndrome, campomelic dysplasia (CD), The present study investigated two major classes of CD mutations: 1) point mutations in the high mobility group (HMG) domain and 2) truncations and frameshifts that alter the C terminus of the protein. We analyzed the effect of one novel mutation and three other point mutations in the HMG domain of SOX9 on the DNA binding and DNA bending properties of the protein. The F12L mutant HMG domain shows negligible DNA binding, the H65Y mutant shows minimal DNA binding, whereas the A19V mutant shows near wild type DNA binding and bends DNA normally. Interestingly, the P70R mutant has altered DNA binding specificity, but also bends DNA normally. The effects of the point mutations were interpreted using a molecular model of the SOX9 HMG domain. We analyzed the effects upon transcription of mutations resembling the truncation and frameshift mutations in CD patients, and found that progressive deletion of the C terminus causes progressive loss of transactivation, Maximal transactivation by SOX9 requires both the C-terminal domain rich in proline, glutamine, and serine and the adjacent domain composed entirely of proline, glutamine, and alanine, Thus, CD arises by mutations that interfere with DNA binding by SOX9 or truncate the C-terminal transactivation domain and thereby impede the ability of SOX9 to activate target genes during organ development.
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页码:24023 / 24030
页数:8
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