Candidate pathway analysis of surfactant proteins identifies CTSH and SFTA2 that influences lung cancer risk

Author:

Luyapan Jennifer12ORCID,Bossé Yohan34,Li Zhonglin3,Xiao Xiangjun5,Rosenberger Albert6,Hung Rayjean J7,Lam Stephen8,Zienolddiny Shanbeh9,Liu Geoffrey10,Kiemeney Lambertus A11,Chen Chu12,McKay James13,Johansson Mattias13,Johansson Mikael14,Tardon Adonina15,Fernandez-Tardon Guillermo15,Brennan Paul16,Field John K17,Davies Michael P17,Woll Penella J18,Cox Angela19,Taylor Fiona19,Arnold Susanne M20,Lazarus Philip21,Grankvist Kjell22,Landi Maria T23,Christiani David C2425,MacKenzie Todd A12,Amos Christopher I125

Affiliation:

1. Dartmouth College Quantitative Biomedical Science Program, Geisel School of Medicine, , Hanover, NH 03755, USA

2. Dartmouth College Department of Biomedical Data Science, Geisel School of Medicine, , Lebanon, NH 03756, USA

3. Institut Universitaire de Cardiologie et de Pneumologie de Québec, Université Laval , Quebec City, G1V 0A6, Canada

4. Laval University Department of Molecular Medicine, , Quebec City, G1V 0A6, Canada

5. Department of Medicine, Dan L. Duncan Comprehensive Cancer Center, Baylor College of Medicine , Houston, TX 77030, USA

6. Institut für Genetische Epidemiologie, Georg-August-Universität Göttingen , Gottingen, Niedersachsen, Germany

7. Prosserman Centre for Population Health Research, Lunenfeld-Tanenbuaum Research Institute, Sinai Health System , Toronto, ON, M5G 1X5, Canada

8. British Columbia Cancer Agency Department of Integrative Oncology, , Vancouver, BC, V5Z 4E6, Canada

9. Department of Toxicology, National Institute of Occupational Health , Oslo 0033, Norway

10. Princess Margaret Cancer Centre , Princess Margaret Research Institute, Epidemiology Division,Toronto, ON, M5G 1L7, Canada

11. Radboud University Medical Center Department for Health Evidence, , Nijmegen, 6525 GA, the Netherlands

12. Fred Hutchinson Cancer Center Program in Epidemiology, Division of Public Health Sciences, , Seattle, WA, 98109, USA

13. Genomic Epidemiology Branch International Agency for Research on Cancer (IARC/WHO), Lyon 69008, France

14. Umeå University Department of Radiation Sciences, Oncology, , Umeå, 901 87, Sweden

15. Health Research Institute of the Principality of Asturias, University of Oviedo and CIBERSP, Oviedo, Asturias, 33071, Spain

16. Institute of Medical Informatics, Biometry and Epidemiology, Chair of Epidemiology, Ludwig Maximillians University , Munich, Bavaria, 80539, Germany

17. The University of Liverpool Institute of Translational Medicine Molecular and Clinical Cancer Medicine, Roy Castle Lung Cancer Research Programme, , Liverpool, L69 7ZX, UK

18. University of Sheffield Academic Unit of Clinical Oncology, , Sheffield, S10 2AH, UK

19. University of Sheffield Department of Oncology and Metabolism, , Sheffield, S10 2AH, UK

20. Division of Medical Oncology, Cancer Center, University of Kentucky , Lexington, KY 40508, USA

21. College of Pharmacy and Pharmaceutical Sciences, Washington State University Department of Pharmaceutical Sciences, , Spokane, WA, 99163, USA

22. Umeå University Department of Medical Biosciences, Clinical Chemistry, , Umeå, 901 87, Sweden

23. National Cancer Institute Division of Cancer Epidemiology and Genetics, , Bethesda, MD, 20892, USA

24. Harvard School of Public Health Department of Environmental Health, , Boston, MA 02115, USA

25. Massachusetts General Hospital Department of Medicine, , Boston, MA 02115, USA

Abstract

Abstract Pulmonary surfactant is a lipoprotein synthesized and secreted by alveolar type II cells in lung. We evaluated the associations between 200,139 single nucleotide polymorphisms (SNPs) of 40 surfactant-related genes and lung cancer risk using genotyped data from two independent lung cancer genome-wide association studies. Discovery data included 18,082 cases and 13,780 controls of European ancestry. Replication data included 1,914 cases and 3,065 controls of European descent. Using multivariate logistic regression, we found novel SNPs in surfactant-related genes CTSH [rs34577742 C > T, odds ratio (OR) = 0.90, 95% confidence interval (CI) = 0.89–0.93, P = 7.64 × 10−9] and SFTA2 (rs3095153 G > A, OR = 1.16, 95% CI = 1.10–1.21, P = 1.27 × 10−9) associated with overall lung cancer in the discovery data and validated in an independent replication data—CTSH (rs34577742 C > T, OR = 0.88, 95% CI = 0.80–0.96, P = 5.76 × 10−3) and SFTA2 (rs3095153 G > A, OR = 1.14, 95% CI = 1.01–1.28, P = 3.25 × 10−2). Among ever smokers, we found SNPs in CTSH (rs34577742 C > T, OR = 0.89, 95% CI = 0.85–0.92, P = 1.94 × 10−7) and SFTA2 (rs3095152 G > A, OR = 1.20, 95% CI = 1.14–1.27, P = 4.25 × 10−11) associated with overall lung cancer in the discovery data and validated in the replication data—CTSH (rs34577742 C > T, OR = 0.88, 95% CI = 0.79–0.97, P = 1.64 × 10−2) and SFTA2 (rs3095152 G > A, OR = 1.15, 95% CI = 1.01–1.30, P = 3.81 × 10−2). Subsequent transcriptome-wide association study using expression weights from a lung expression quantitative trait loci study revealed genes most strongly associated with lung cancer are CTSH (PTWAS = 2.44 × 10−4) and SFTA2 (PTWAS = 2.32 × 10−6).

Funder

Cancer Prevention Research Institute of Texas

National Cancer Institute

National Library of Medicine

National Institute of Health

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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