Skip to main content
Top
Published in: Orphanet Journal of Rare Diseases 1/2022

Open Access 01-12-2022 | Spontaneous Pneumothorax | Research

Genetic insight into Birt–Hogg–Dubé syndrome in Indian patients reveals novel mutations at FLCN

Authors: Anindita Ray, Esita Chattopadhyay, Richa Singh, Saurabh Ghosh, Arnab Bera, Mridul Sarma, Mahavir Munot, Unnati Desai, Sujeet Rajan, Pralhad Prabhudesai, Ashish K. Prakash, Sushmita Roy Chowdhury, Niladri Bhowmick, Raja Dhar, Zarir F. Udwadia, Atin Dey, Subhra Mitra, Jyotsna M. Joshi, Arindam Maitra, Bidyut Roy

Published in: Orphanet Journal of Rare Diseases | Issue 1/2022

Login to get access

Abstract

Background

Birt-Hogg-Dubé syndrome (BHDS) is a rare monogenic condition mostly associated with germline mutations at FLCN. It is characterized by either one or more manifestations of primary spontaneous pneumothorax (PSP), skin fibrofolliculomas and renal carcinoma (chromophobe). Here, we comprehensively studied the mutational background of 31 clinically diagnosed BHDS patients and their 74 asymptomatic related members from 15 Indian families.

Results

Targeted amplicon next-generation sequencing (NGS) and Sanger sequencing of FLCN in patients and asymptomatic members revealed a total of 76 variants. Among these variants, six different types of pathogenic FLCN mutations were detected in 26 patients and some asymptomatic family members. Two of the variants were novel mutations: an 11-nucleotide deletion (c.1150_1160delGTCCAGTCAGC) and a splice acceptor mutation (c.1301-1G > A). Two variants were Clinvar reported pathogenic mutations: a stop-gain (c.634C > T) and a 4-nucleotide duplication (c.1329_1332dupAGCC). Two known variants were: hotspot deletion (c.1285delC) and a splice donor mutation (c.1300 + 1G > A). FLCN mutations could not be detected in patients and asymptomatic members from 5 families. All these mutations greatly affected the protein stability and FLCN-FNIP2 interaction as observed by molecular docking method. Family-based association study inferred pathogenic FLCN mutations are significantly associated with BHDS.

Conclusion

Six pathogenic FLCN mutations were detected in patients from 10 families out of 15 families in the cohort. Therefore, genetic screening is necessary to validate the clinical diagnosis. The pathogenic mutations at FLCN affects the protein–protein interaction, which plays key roles in various metabolic pathways. Since, pathogenic mutations could not be detected in exonic regions of FLCN in 5 families, whole genome sequencing is necessary to detect all mutations at FLCN and/or any undescribed gene/s that may also be implicated in BHDS.
Appendix
Available only for authorised users
Literature
1.
go back to reference Birt AR, Hogg GR, Dubé WJ. Hereditary Multiple Fibrofolliculomas With Trichodiscomas and Acrochordons. Arch Dermatol. 1977;113:1674.PubMedCrossRef Birt AR, Hogg GR, Dubé WJ. Hereditary Multiple Fibrofolliculomas With Trichodiscomas and Acrochordons. Arch Dermatol. 1977;113:1674.PubMedCrossRef
2.
go back to reference Zbar B, Alvord WG, Glenn G, Turner M, Pavlovich CP, Schmidt L, et al. Risk of renal and colonic neoplasms and spontaneous pneumothorax pneurnothorax in the Birt-Hogg-Dubé syndrome. Cancer Epidemiol Biomarkers Prev. 2002;11:393–400.PubMed Zbar B, Alvord WG, Glenn G, Turner M, Pavlovich CP, Schmidt L, et al. Risk of renal and colonic neoplasms and spontaneous pneumothorax pneurnothorax in the Birt-Hogg-Dubé syndrome. Cancer Epidemiol Biomarkers Prev. 2002;11:393–400.PubMed
3.
go back to reference Nickerson ML, Warren MB, Toro JR, Matrosova V, Glenn G, Turner ML, et al. Mutations in a novel gene lead to kidney tumors, lung wall defects, and benign tumors of the hair follicle in patients with the Birt–Hogg–Dubé syndrome. Cancer Cell. 2002;2:157–64.PubMedCrossRef Nickerson ML, Warren MB, Toro JR, Matrosova V, Glenn G, Turner ML, et al. Mutations in a novel gene lead to kidney tumors, lung wall defects, and benign tumors of the hair follicle in patients with the Birt–Hogg–Dubé syndrome. Cancer Cell. 2002;2:157–64.PubMedCrossRef
4.
go back to reference Abolnik IZ, Lossos IS, Zlotogora J, Brauer R. On the inheritance of primary spontaneous pneumothorax. Am J Med Genet. 1991;40:155–8.PubMedCrossRef Abolnik IZ, Lossos IS, Zlotogora J, Brauer R. On the inheritance of primary spontaneous pneumothorax. Am J Med Genet. 1991;40:155–8.PubMedCrossRef
5.
go back to reference Schmidt LS, Linehan WM. FLCN: the causative gene for Birt–Hogg–Dubé syndrome. Gene. 2018;640:28–42.PubMedCrossRef Schmidt LS, Linehan WM. FLCN: the causative gene for Birt–Hogg–Dubé syndrome. Gene. 2018;640:28–42.PubMedCrossRef
6.
go back to reference Kennedy JC, Khabibullin D, Boku Y, Shi W, Henske EP. New developments in the pathogenesis of pulmonary cysts in Birt–Hogg–Dubé syndrome. Semin Respir Crit Care Med. 2020;41:247–55.PubMedCrossRef Kennedy JC, Khabibullin D, Boku Y, Shi W, Henske EP. New developments in the pathogenesis of pulmonary cysts in Birt–Hogg–Dubé syndrome. Semin Respir Crit Care Med. 2020;41:247–55.PubMedCrossRef
7.
go back to reference Schmidt LS, Warren MB, Nickerson ML, Weirich G, Matrosova V, Toro JR, et al. Birt–Hogg–Dubé syndrome, a genodermatosis associated with spontaneous pneumothorax and kidney neoplasia, maps to chromosome 17p11.2. Am J Hum Genet. 2001;69:876–82.PubMedPubMedCentralCrossRef Schmidt LS, Warren MB, Nickerson ML, Weirich G, Matrosova V, Toro JR, et al. Birt–Hogg–Dubé syndrome, a genodermatosis associated with spontaneous pneumothorax and kidney neoplasia, maps to chromosome 17p11.2. Am J Hum Genet. 2001;69:876–82.PubMedPubMedCentralCrossRef
8.
go back to reference Toro JR, Wei MH, Glenn GM, Weinreich M, Toure O, Vocke C, et al. BHD mutations, clinical and molecular genetic investigations of Birt–Hogg–Dubé syndrome: a new series of 50 families and a review of published reports. J Med Genet. 2008;45:321–31.PubMedCrossRef Toro JR, Wei MH, Glenn GM, Weinreich M, Toure O, Vocke C, et al. BHD mutations, clinical and molecular genetic investigations of Birt–Hogg–Dubé syndrome: a new series of 50 families and a review of published reports. J Med Genet. 2008;45:321–31.PubMedCrossRef
9.
go back to reference Vocke CD, Yang Y, Pavlovich CP, Schmidt LS, Nickerson ML, Torres-Cabala CA, et al. High frequency of somatic frameshift BHD gene mutations in Birt–Hogg–Dubé-Associated renal tumors. J Natl Cancer Inst. 2005;97:931–5.PubMedCrossRef Vocke CD, Yang Y, Pavlovich CP, Schmidt LS, Nickerson ML, Torres-Cabala CA, et al. High frequency of somatic frameshift BHD gene mutations in Birt–Hogg–Dubé-Associated renal tumors. J Natl Cancer Inst. 2005;97:931–5.PubMedCrossRef
10.
go back to reference Benhammou JN, Vocke CD, Santani A, Schmidt LS, Baba M, Seyama K, et al. Identification of intragenic deletions and duplication in the FLCN gene in Birt–Hogg–Dubé syndrome. Genes Chromosom Cancer. 2011;50:466–77.PubMedCrossRef Benhammou JN, Vocke CD, Santani A, Schmidt LS, Baba M, Seyama K, et al. Identification of intragenic deletions and duplication in the FLCN gene in Birt–Hogg–Dubé syndrome. Genes Chromosom Cancer. 2011;50:466–77.PubMedCrossRef
11.
go back to reference Okamoto S, Ebana H, Kurihara M, Mitani K, Kobayashi E, Hayashi T, et al. Folliculin haploinsufficiency causes cellular dysfunction of pleural mesothelial cells. Sci Rep. 2021;11:10814.PubMedPubMedCentralCrossRef Okamoto S, Ebana H, Kurihara M, Mitani K, Kobayashi E, Hayashi T, et al. Folliculin haploinsufficiency causes cellular dysfunction of pleural mesothelial cells. Sci Rep. 2021;11:10814.PubMedPubMedCentralCrossRef
12.
go back to reference Nahorski MS, Reiman A, Lim DHK, Nookala RK, Seabra L, Lu X, et al. Birt–Hogg–Dubé syndrome-associated FLCN mutations disrupt protein stability. Hum Mutat. 2011;32:921–9.PubMedCrossRef Nahorski MS, Reiman A, Lim DHK, Nookala RK, Seabra L, Lu X, et al. Birt–Hogg–Dubé syndrome-associated FLCN mutations disrupt protein stability. Hum Mutat. 2011;32:921–9.PubMedCrossRef
13.
go back to reference Chen J, Futami K, Petillo D, Peng J, Wang P, Knol J, et al. Deficiency of FLCN in mouse kidney led to development of polycystic kidneys and renal neoplasia. PLOS ONE. 2008;3:e3581.PubMedPubMedCentralCrossRef Chen J, Futami K, Petillo D, Peng J, Wang P, Knol J, et al. Deficiency of FLCN in mouse kidney led to development of polycystic kidneys and renal neoplasia. PLOS ONE. 2008;3:e3581.PubMedPubMedCentralCrossRef
14.
go back to reference Baba M, Hong SB, Sharma N, Warren MB, Nickerson ML, Iwamatsu A, et al. Folliculin encoded by the BHD gene interacts with a binding protein, FNIP1, and AMPK, and is involved in AMPK and mTOR signaling. Proc Natl Acad Sci USA. 2006;103:15552–7.PubMedPubMedCentralCrossRef Baba M, Hong SB, Sharma N, Warren MB, Nickerson ML, Iwamatsu A, et al. Folliculin encoded by the BHD gene interacts with a binding protein, FNIP1, and AMPK, and is involved in AMPK and mTOR signaling. Proc Natl Acad Sci USA. 2006;103:15552–7.PubMedPubMedCentralCrossRef
15.
go back to reference Goncharova EA, Goncharov DA, James ML, Atochina-Vasserman EN, Stepanova V, Hong SB, et al. Folliculin controls lung alveolar enlargement and epithelial cell survival through E-cadherin, LKB1, and AMPK. Cell Rep. 2014;7:412–23.PubMedPubMedCentralCrossRef Goncharova EA, Goncharov DA, James ML, Atochina-Vasserman EN, Stepanova V, Hong SB, et al. Folliculin controls lung alveolar enlargement and epithelial cell survival through E-cadherin, LKB1, and AMPK. Cell Rep. 2014;7:412–23.PubMedPubMedCentralCrossRef
16.
go back to reference Hasumi H, Baba M, Hasumi Y, Huang Y, Oh H, Hughes RM, et al. Regulation of mitochondrial oxidative metabolism by tumor suppressor FLCN. J Natl Cancer Inst. 2012;104:1750–64.PubMedPubMedCentralCrossRef Hasumi H, Baba M, Hasumi Y, Huang Y, Oh H, Hughes RM, et al. Regulation of mitochondrial oxidative metabolism by tumor suppressor FLCN. J Natl Cancer Inst. 2012;104:1750–64.PubMedPubMedCentralCrossRef
17.
18.
go back to reference Nishii T, Tanabe M, Tanaka R, Matsuzawa T, Okudela K, Nozawa A, et al. Unique mutation, accelerated mTOR signaling and angiogenesis in the pulmonary cysts of Birt–Hogg–Dubé syndrome. Pathol Int. 2013;63:45–55.PubMedCrossRef Nishii T, Tanabe M, Tanaka R, Matsuzawa T, Okudela K, Nozawa A, et al. Unique mutation, accelerated mTOR signaling and angiogenesis in the pulmonary cysts of Birt–Hogg–Dubé syndrome. Pathol Int. 2013;63:45–55.PubMedCrossRef
19.
go back to reference Medvetz DA, Khabibullin D, Hariharan V, Ongusaha PP, Goncharova EA, Schlechter T, et al. Folliculin, the product of the Birt-Hogg-Dube tumor suppressor gene, interacts with the adherens junction protein p0071 to regulate cell-cell adhesion. PLOS ONE. 2012;7:e47842.PubMedPubMedCentralCrossRef Medvetz DA, Khabibullin D, Hariharan V, Ongusaha PP, Goncharova EA, Schlechter T, et al. Folliculin, the product of the Birt-Hogg-Dube tumor suppressor gene, interacts with the adherens junction protein p0071 to regulate cell-cell adhesion. PLOS ONE. 2012;7:e47842.PubMedPubMedCentralCrossRef
20.
go back to reference Laviolette LA, Mermoud J, Calvo IA, Olson N, Boukhali M, Steinlein OK, et al. Negative regulation of EGFR signalling by the human folliculin tumour suppressor protein. Nat Commun. 2017;8:1–14.CrossRef Laviolette LA, Mermoud J, Calvo IA, Olson N, Boukhali M, Steinlein OK, et al. Negative regulation of EGFR signalling by the human folliculin tumour suppressor protein. Nat Commun. 2017;8:1–14.CrossRef
21.
go back to reference Bastola P, Stratton Y, Kellner E, Mikhaylova O, Yi Y, Sartor MA, et al. Folliculin contributes to VHL Tumor suppressing activity in renal cancer through regulation of autophagy. PLOS ONE. 2013;8:e70030.PubMedPubMedCentralCrossRef Bastola P, Stratton Y, Kellner E, Mikhaylova O, Yi Y, Sartor MA, et al. Folliculin contributes to VHL Tumor suppressing activity in renal cancer through regulation of autophagy. PLOS ONE. 2013;8:e70030.PubMedPubMedCentralCrossRef
22.
23.
go back to reference Laviolette LA, Wilson J, Koller J, Neil C, Hulick P, Rejtar T, et al. Human folliculin delays cell cycle progression through late S and G2/M-phases: effect of phosphorylation and tumor associated mutations. PLOS ONE. 2013;8:e66775.PubMedPubMedCentralCrossRef Laviolette LA, Wilson J, Koller J, Neil C, Hulick P, Rejtar T, et al. Human folliculin delays cell cycle progression through late S and G2/M-phases: effect of phosphorylation and tumor associated mutations. PLOS ONE. 2013;8:e66775.PubMedPubMedCentralCrossRef
24.
go back to reference Menko FH, van Steensel MA, Giraud S, Friis-Hansen L, Richard S, Ungari S, et al. Birt–Hogg–Dubé syndrome: diagnosis and management. Lancet Oncol. 2009;10:1199–206.PubMedCrossRef Menko FH, van Steensel MA, Giraud S, Friis-Hansen L, Richard S, Ungari S, et al. Birt–Hogg–Dubé syndrome: diagnosis and management. Lancet Oncol. 2009;10:1199–206.PubMedCrossRef
26.
go back to reference Boone PM, Scott RM, Marciniak SJ, Henske EP, Raby BA. The genetics of pneumothorax. Am J Respir Crit Care Med. 2019;119:1344–57.CrossRef Boone PM, Scott RM, Marciniak SJ, Henske EP, Raby BA. The genetics of pneumothorax. Am J Respir Crit Care Med. 2019;119:1344–57.CrossRef
27.
go back to reference Ray A, Paul S, Chattopadhyay E, Kundu S, Roy B. Genetic analysis of familial spontaneous pneumothorax in an Indian family. Lung. 2015;193:433–8.PubMedCrossRef Ray A, Paul S, Chattopadhyay E, Kundu S, Roy B. Genetic analysis of familial spontaneous pneumothorax in an Indian family. Lung. 2015;193:433–8.PubMedCrossRef
28.
go back to reference Köhler S, Schulz MH, Krawitz P, Bauer S, Dölken S, Ott CE, et al. Clinical diagnostics in human genetics with semantic similarity searches in ontologies. Am J Hum Genet. 2009;85:457–64.PubMedPubMedCentralCrossRef Köhler S, Schulz MH, Krawitz P, Bauer S, Dölken S, Ott CE, et al. Clinical diagnostics in human genetics with semantic similarity searches in ontologies. Am J Hum Genet. 2009;85:457–64.PubMedPubMedCentralCrossRef
29.
go back to reference Köhler S, Vasilevsky NA, Engelstad M, Foster E, McMurry J, Aymé S, et al. The human phenotype ontology in 2017. Nucleic Acids Res. 2017;45:865–76.CrossRef Köhler S, Vasilevsky NA, Engelstad M, Foster E, McMurry J, Aymé S, et al. The human phenotype ontology in 2017. Nucleic Acids Res. 2017;45:865–76.CrossRef
30.
go back to reference Andrews S. Babraham bioinformatics: FastQC A quality control tool for high throughput sequence data. Soil 1973. Andrews S. Babraham bioinformatics: FastQC A quality control tool for high throughput sequence data. Soil 1973.
31.
go back to reference Chang X, Wang K. Wannovar: annotating genetic variants for personal genomes via the web. J Med Genet. 2012;49:433–6.PubMedCrossRef Chang X, Wang K. Wannovar: annotating genetic variants for personal genomes via the web. J Med Genet. 2012;49:433–6.PubMedCrossRef
32.
33.
go back to reference Kim S, Scheffler K, Halpern AL, Bekritsky MA, Noh E, Källberg M, et al. Strelka2: fast and accurate calling of germline and somatic variants. Nat Methods. 2018;15:591–4.PubMedCrossRef Kim S, Scheffler K, Halpern AL, Bekritsky MA, Noh E, Källberg M, et al. Strelka2: fast and accurate calling of germline and somatic variants. Nat Methods. 2018;15:591–4.PubMedCrossRef
34.
go back to reference Koboldt DC, Zhang Q, Larson DE, Shen D, McLellan MD, Lin L, et al. VarScan 2: Somatic mutation and copy number alteration discovery in cancer by exome sequencing. Genome Res. 2012;22:568–76.PubMedPubMedCentralCrossRef Koboldt DC, Zhang Q, Larson DE, Shen D, McLellan MD, Lin L, et al. VarScan 2: Somatic mutation and copy number alteration discovery in cancer by exome sequencing. Genome Res. 2012;22:568–76.PubMedPubMedCentralCrossRef
36.
go back to reference Poplin R, Ruano-Rubio V, DePristo MA, Fennell TJ, Carneiro MO, Auwera GA Van der, et al. Scaling accurate genetic variant discovery to tens of thousands of samples. BioRxiv. 2017. Poplin R, Ruano-Rubio V, DePristo MA, Fennell TJ, Carneiro MO, Auwera GA Van der, et al. Scaling accurate genetic variant discovery to tens of thousands of samples. BioRxiv. 2017.
38.
go back to reference Schwarz JM, Cooper DN, Schuelke M, Seelow D. Mutationtaster2: Mutation prediction for the deep-sequencing age. Nat Methods. 2014;11:361–2.PubMedCrossRef Schwarz JM, Cooper DN, Schuelke M, Seelow D. Mutationtaster2: Mutation prediction for the deep-sequencing age. Nat Methods. 2014;11:361–2.PubMedCrossRef
39.
go back to reference Aguet F, Brown AA, Castel SE, Davis JR, He Y, Jo B, et al. Genetic effects on gene expression across human tissues. Nature. 2017;550:204–13.CrossRef Aguet F, Brown AA, Castel SE, Davis JR, He Y, Jo B, et al. Genetic effects on gene expression across human tissues. Nature. 2017;550:204–13.CrossRef
40.
go back to reference Karczewski KJ, Francioli LC, Tiao G, Cummings BB, Alföldi J, Wang Q, et al. The mutational constraint spectrum quantified from variation in 141,456 humans. bioRxiv. 2020. Karczewski KJ, Francioli LC, Tiao G, Cummings BB, Alföldi J, Wang Q, et al. The mutational constraint spectrum quantified from variation in 141,456 humans. bioRxiv. 2020.
42.
go back to reference Martin ER, Monks SA, Warren LL, Kaplan NL. A test for linkage and association in general pedigrees: the pedigree disequilibrium test. Am J Hum Genet. 2000;67:146–54.PubMedPubMedCentralCrossRef Martin ER, Monks SA, Warren LL, Kaplan NL. A test for linkage and association in general pedigrees: the pedigree disequilibrium test. Am J Hum Genet. 2000;67:146–54.PubMedPubMedCentralCrossRef
43.
go back to reference Laskowski RA, MacArthur MW, Moss DS, Thornton JM. PROCHECK: a program to check the stereochemical quality of protein structures. J Appl Crystallogr. 1993;26:283–91.CrossRef Laskowski RA, MacArthur MW, Moss DS, Thornton JM. PROCHECK: a program to check the stereochemical quality of protein structures. J Appl Crystallogr. 1993;26:283–91.CrossRef
45.
go back to reference Fröhlich BA, Zeitz C, Mátyás G, Alkadhi H, Tuor C, Berger W, et al. Novel mutations in the folliculin gene associated with spontaneous pneumothorax. Eur Respir J. 2008;32:1316–20.PubMedCrossRef Fröhlich BA, Zeitz C, Mátyás G, Alkadhi H, Tuor C, Berger W, et al. Novel mutations in the folliculin gene associated with spontaneous pneumothorax. Eur Respir J. 2008;32:1316–20.PubMedCrossRef
47.
go back to reference Sattler EC, Syunyaeva Z, Mansmann U, Steinlein OK. Genetic risk factors for spontaneous pneumothorax in Birt–Hogg–Dubé syndrome. Chest. 2020;157:1199–206.PubMedCrossRef Sattler EC, Syunyaeva Z, Mansmann U, Steinlein OK. Genetic risk factors for spontaneous pneumothorax in Birt–Hogg–Dubé syndrome. Chest. 2020;157:1199–206.PubMedCrossRef
48.
go back to reference Khoo SK, Bradley M, Wong FK, Hedblad MA, Nordenskjöld M, Teh BT. Birt-Hogg-Dubé syndrome: Mapping of a novel hereditary neoplasia gene to chromosome 17p12-q11.2. Oncogene. 2001;20:5239–42.PubMedCrossRef Khoo SK, Bradley M, Wong FK, Hedblad MA, Nordenskjöld M, Teh BT. Birt-Hogg-Dubé syndrome: Mapping of a novel hereditary neoplasia gene to chromosome 17p12-q11.2. Oncogene. 2001;20:5239–42.PubMedCrossRef
49.
go back to reference Furuya M, Nakatani Y. Birt–Hogg–Dubé syndrome : clinicopathological features of the lung. J Clin Pathol. 2013;66:178–86.PubMedCrossRef Furuya M, Nakatani Y. Birt–Hogg–Dubé syndrome : clinicopathological features of the lung. J Clin Pathol. 2013;66:178–86.PubMedCrossRef
50.
go back to reference Zhang X, Ma D, Zou W, Ding Y, Zhu C, Min H, et al. A rapid NGS strategy for comprehensive molecular diagnosis of Birt–Hogg–Dubé syndrome in patients with primary spontaneous pneumothorax. Respir Res. 2016;17:1–10.CrossRef Zhang X, Ma D, Zou W, Ding Y, Zhu C, Min H, et al. A rapid NGS strategy for comprehensive molecular diagnosis of Birt–Hogg–Dubé syndrome in patients with primary spontaneous pneumothorax. Respir Res. 2016;17:1–10.CrossRef
Metadata
Title
Genetic insight into Birt–Hogg–Dubé syndrome in Indian patients reveals novel mutations at FLCN
Authors
Anindita Ray
Esita Chattopadhyay
Richa Singh
Saurabh Ghosh
Arnab Bera
Mridul Sarma
Mahavir Munot
Unnati Desai
Sujeet Rajan
Pralhad Prabhudesai
Ashish K. Prakash
Sushmita Roy Chowdhury
Niladri Bhowmick
Raja Dhar
Zarir F. Udwadia
Atin Dey
Subhra Mitra
Jyotsna M. Joshi
Arindam Maitra
Bidyut Roy
Publication date
01-12-2022
Publisher
BioMed Central
Published in
Orphanet Journal of Rare Diseases / Issue 1/2022
Electronic ISSN: 1750-1172
DOI
https://doi.org/10.1186/s13023-022-02326-5

Other articles of this Issue 1/2022

Orphanet Journal of Rare Diseases 1/2022 Go to the issue