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H255Y and K508R missense mutations in tumour suppressorfolliculin (FLCN)promote kidney cell proliferation

Authors :
Yukiko Hasumi
W. Marston Linehan
Laura S. Schmidt
Ming Hui Wei
Masaya Baba
Maria J. Merino
Martin Lang
Lionel Feigenbaum
Kazuhide Makiyama
Yasuhiro Isono
Adam R. Metwalli
Hafumi Nishi
Hisashi Hasumi
Andrew C. Warner
Berton Zbar
Cathy D. Vocke
Keiichi Kondo
Takashi Kawahara
Noboru Nakaigawa
Mitsuko Furuya
Diana C. Haines
Nobuko Irie
Masahiro Yao
Herbert Hagenau
Chiharu Esumi
Source :
Human Molecular Genetics. :ddw392
Publication Year :
2016
Publisher :
Oxford University Press (OUP), 2016.

Abstract

Germline H255Y and K508R missense mutations in the folliculin (FLCN) gene have been identified in patients with bilateral multifocal (BMF) kidney tumours and clinical manifestations of Birt-Hogg-Dubé (BHD) syndrome, or with BMF kidney tumours as the only manifestation; however, their impact on FLCN function remains to be determined. In order to determine if FLCN H255Y and K508R missense mutations promote aberrant kidney cell proliferation leading to pathogenicity, we generated mouse models expressing these mutants using BAC recombineering technology and investigated their ability to rescue the multi-cystic phenotype of Flcn-deficient mouse kidneys. Flcn H255Y mutant transgene expression in kidney-targeted Flcn knockout mice did not rescue the multi-cystic kidney phenotype. However, expression of the Flcn K508R mutant transgene partially, but not completely, abrogated the phenotype. Notably, expression of the Flcn K508R mutant transgene in heterozygous Flcn knockout mice resulted in development of multi-cystic kidneys and cardiac hypertrophy in some mice. These results demonstrate that both FLCN H255Y and K508R missense mutations promote aberrant kidney cell proliferation, but to different degrees. Based on the phenotypes of our preclinical models, the FLCN H255Y mutant protein has lost it tumour suppressive function leading to the clinical manifestations of BHD, whereas the FLCN K508R mutant protein may have a dominant negative effect on the function of wild-type FLCN in regulating kidney cell proliferation and, therefore, act as an oncoprotein. These findings may provide mechanistic insight into the role of FLCN in regulating kidney cell proliferation and facilitate the development of novel therapeutics for FLCN-deficient kidney cancer.

Details

ISSN :
14602083 and 09646906
Database :
OpenAIRE
Journal :
Human Molecular Genetics
Accession number :
edsair.doi.dedup.....fb8cfb90089a6e7c436be11ea19b004c
Full Text :
https://doi.org/10.1093/hmg/ddw392