Mutations in PTPN11, encoding the protein tyrosine phosphatase SHP-2, cause Noonan syndrome

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作者
Marco Tartaglia
Ernest L. Mehler
Rosalie Goldberg
Giuseppe Zampino
Han G. Brunner
Hannie Kremer
Ineke van der Burgt
Andrew H. Crosby
Andra Ion
Steve Jeffery
Kamini Kalidas
Michael A. Patton
Raju S. Kucherlapati
Bruce D. Gelb
机构
[1] Mount Sinai School of Medicine,Department of Pediatrics
[2] Mount Sinai School of Medicine,Department of Physiology and Biophysics
[3] Mount Sinai School of Medicine,Department of Human Genetics
[4] Laboratorio di Metabolismo e Biochimica Patologica,Department of Molecular Genetics
[5] Istituto Superiore di Sanità,Department of Human Genetics
[6] Albert Einstein College of Medicine,Department of Medical Genetics
[7] Istituto di Clinica Pediatrica,undefined
[8] Università Cattolica del Sacro Cuore,undefined
[9] University Medical Centre,undefined
[10] St George's Hospital Medical School,undefined
来源
Nature Genetics | 2001年 / 29卷
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摘要
Noonan syndrome (MIM 163950) is an autosomal dominant disorder characterized by dysmorphic facial features, proportionate short stature and heart disease (most commonly pulmonic stenosis and hypertrophic cardiomyopathy)1,2. Webbed neck, chest deformity, cryptorchidism, mental retardation and bleeding diatheses also are frequently associated with this disease. This syndrome is relatively common, with an estimated incidence of 1 in 1,000–2,500 live births. It has been mapped to a 5-cM region (N-SH2) on chromosome 12q24.1, and genetic heterogeneity has also been documented3,4,5,6. Here we show that missense mutations in PTPN11 (MIM 176876)—a gene encoding the nonreceptor protein tyrosine phosphatase SHP-2, which contains two Src homology 2 (SH2) domains—cause Noonan syndrome and account for more than 50% of the cases that we examined. All PTPN11 missense mutations cluster in interacting portions of the amino N-SH2 domain and the phosphotyrosine phosphatase domains, which are involved in switching the protein between its inactive and active conformations. An energetics-based structural analysis of two N-SH2 mutants indicates that in these mutants there may be a significant shift of the equilibrium favoring the active conformation. This implies that they are gain-of-function changes and that the pathogenesis of Noonan syndrome arises from excessive SHP-2 activity.
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页码:465 / 468
页数:3
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