The Missing Piece of the Puzzle: Unveiling the Role of PTPN11 Gene in Multiple Osteochondromas in a Large Cohort Study

Author:

Borovikov Artem1ORCID,Galeeva Nailya1ORCID,Marakhonov Andrey1ORCID,Murtazina Aysylu1ORCID,Kadnikova Varvara1ORCID,Davydenko Kseniya1ORCID,Orlova Anna1ORCID,Sparber Peter1ORCID,Markova Tatiana1ORCID,Orlova Maria1ORCID,Osipova Darya1ORCID,Nagornova Tatyana1ORCID,Semenova Natalia1ORCID,Levchenko Olga1ORCID,Filatova Alexandra1ORCID,Sharova Margarita1ORCID,Vasiluev Peter1ORCID,Kanivets Ilya23ORCID,Pyankov Denis2ORCID,Sharkov Artem24ORCID,Udalova Vasilisa2ORCID,Kenis Vladimir5ORCID,Nikitina Natalia6ORCID,Sumina Maria6ORCID,Zherdev Konstantin78ORCID,Petel'guzov Aleksandr7ORCID,Chelpachenko Oleg7ORCID,Zubkov Pavel7ORCID,Dan Ivan9ORCID,Snetkov Andrey9ORCID,Akinshina Alexandra9ORCID,Buklemishev Yury9ORCID,Ryzhkova Oxana1ORCID,Tabakov Vyacheslav1ORCID,Zakharova Ekaterina1ORCID,Korostelev Sergey28ORCID,Zinchenko Rena1ORCID,Skoblov Mikhail1ORCID,Polyakov Alexander1ORCID,Dadali Elena1ORCID,Kutsev Sergey1ORCID,Shchagina Olga1ORCID

Affiliation:

1. Research Centre for Medical Genetics, Moscow, Russia

2. Genomed, Moscow, Russia

3. Russian Medical Academy of Continuous Professional Education, Moscow, Russia

4. Veltischev Research and Clinical Institute of Pediatrics and Pediatric Surgery of the Pirogov Russian National Research Medical University, Moscow, Russia

5. The Turner Scientific Research Institute for Children’s Orthopedics, Saint Petersburg, Russia

6. State Healthcare Institution of Sverdlovsk Region “Clinical and Diagnostic Center “Mother’s and Child Health Protection”, Ekaterinburg, Russia

7. National Medical Research Center of Children’s Health, Moscow, Russia

8. I.M. Sechenov First Moscow State Medical University, Moscow, Russia

9. National Medical Research Center of Traumatology and Orthopedics Named after N.N. Priorov, Moscow, Russia

Abstract

This study is aimed at investigating the clinical and genetic characteristics of 244 unrelated probands diagnosed with multiple osteochondromas (MO). The diagnosis of MO typically involves identifying multiple benign bone tumors known as osteochondromas (OCs) through imaging studies and physical examinations. However, cases with both OCs and enchondromas (ECs) may indicate the more rare condition metachondromatosis (MC), which is assumed to be distinct disease. Previous cohort studies of MO found heterozygous loss-of-function (LoF) variants only in the EXT1 or EXT2 genes, with DNA diagnostic yield ranging from 78 to 95%. The PTPN11 gene, which is causative for MC, was not previously investigated as a gene candidate for MO. In this study, we detected a total of 177 unique single nucleotide and copy number variants in three genes across 220 probands, consisting of 80 previously reported and 97 novel variants. Specifically, we identified five cases with OCs and no ECs as well as four cases with MC carrying LoF variants in the PTPN11 gene and two additional cases with ECs harboring variants in the EXT1/2 genes. These findings suggest a potential overlap between the MO and MC both phenotypically and genetically. These findings highlight the importance of expanding genetic testing beyond the EXT1 and EXT2 genes in MO cases, as other genes such as PTPN11 may also be causative. This can improve the accuracy of diagnosis and treatment for individuals with MO and MC. It is essential to determine whether MO and MC represent distinct diseases or if they encompass a broader clinical spectrum.

Funder

Federal Target Program

Publisher

Hindawi Limited

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