Distribution of mutations in the PEX gene in families with X-linked hypophosphataemic rickets (HYP)

被引:161
作者
Rowe, PSN
Oudet, CL
Francis, F
Sinding, C
Pannetier, S
Econs, MJ
Strom, TM
Meitinger, T
Garabedian, M
David, A
Macher, MA
Questiaux, E
Popowska, E
Pronicka, E
Read, AP
Mokrzycki, A
Glorieux, FH
Drezner, MK
Hanauer, A
Lehrach, H
Goulding, JN
ORiordan, JLH
机构
[1] ULP, CNRS INSERM, INST GENET & BIOL MOL & CELLULAIRE, ILLKIRCH GRAFFENSTADEN, FRANCE
[2] MAX PLANCK INST MOL GENET, D-1000 BERLIN, GERMANY
[3] HOP ST VINCENT DE PAUL, LAB ENDOCRINOL, CNRS URA 583, F-75674 PARIS, FRANCE
[4] DUKE UNIV, DEPT MED, DURHAM, NC 27706 USA
[5] UNIV MUNICH, MUNICH, GERMANY
[6] CHU NANTES, HOP MERE & ENFANT, CLIN MED PEDIAT, F-44035 NANTES 01, FRANCE
[7] HOP ROBERT DEBRE, HOP PARIS, SERV NEPHROL, F-75019 PARIS, FRANCE
[8] CTR HOSP, SERV PEDIAT & NEONATAL, INTERCOMMUNAL ROBERT BALLANGER, AULNAY SOUS BOIS, FRANCE
[9] CTR ZDROWIA DZIECKA, WARSAW, POLAND
[10] UNIV MANCHESTER, DEPT MED GENET, MANCHESTER, LANCS, ENGLAND
[11] SHRINERS HOSP CRIPPLED CHILDREN, GENET UNIT, MONTREAL, PQ H3G 1A6, CANADA
关键词
D O I
10.1093/hmg/6.4.539
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
Mutations in the PEX gene at Xp22.1 (phosphate-regulating gene with homologies to endopeptidases, on the X-chromosome), are responsible for X-linked hypophosphataemic rickets (HYP). Homology of PEX to the M13 family of Zn2+ metallopeptidases which include neprilysin (NEP) as prototype, has raised important questions regarding PEX function at the molecular level. The aim of this study was to analyse 99 HYP families for PEX gene mutations, and to correlate predicted changes in the protein structure with Zn2+ metallopeptidase gene function. Primers flanking 22 characterised exons were used to amplify DNA by PCR, and SSCP was then used to screen for mutations. Deletions, insertions, nonsense mutations, stop codons and splice mutations occurred in 83% of families screened for in all 22 exons, and 51% of a separate set of families screened in 17 PEX gene exons. Missense mutations in four regions of the gene were informative regarding function, with one mutation in the Zn2+-binding site predicted to alter substrate-enzyme interaction and catalysis. Computer analysis of the remaining mutations predicted changes in secondary structure, N-glycosylation, protein phosphorylation and catalytic site molecular structure. The wide range of mutations that align with regions required for protease activity in NEP suggests that PEX also functions as a protease, and may act by processing factor(s) involved in bone mineral metabolism.
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页码:539 / 549
页数:11
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