126
Views
0
CrossRef citations to date
0
Altmetric
Articles

Association of common genetic variants of KCNJ11 gene with the risk of type 2 diabetes mellitus

, , , , &
Pages 530-541 | Received 17 Jul 2019, Accepted 16 Mar 2021, Published online: 14 Apr 2021

References

  • Brunetti, A.; Chiefari, E.; Foti, D. Recent Advances in the Molecular Genetics of Type 2 Diabetes Mellitus. World J. Diabetes. 2014, 5, 128–140. DOI: 10.4239/wjd.v5.i2.128.
  • Rizvi, S.; Raza, S. T.; Rahman, Q.; Mahdi, F. Role of GNB3, NET, KCNJ11, TCF7L2 and GRL Genes Single Nucleotide Polymorphism in the Risk Prediction of Type 2 Diabetes Mellitus. 3 Biotech. 2016, 6, 255. DOI: 10.1007/s13205-016-0572-x.
  • Odgerel, Z.; Lee, H. S.; Erdenebileg, N.; Gandbold, S.; Luvsanjamba, M.; Sambuughin, N.; Sonomtseren, S.; Sharavdorj, P.; Jodov, E.; Altaisaikhan, K.; et al. Genetic Variants in Potassium Channels Are Associated with Type 2 Diabetes in a Mongolian Population. J. Diabetes. 2012, 4, 238–242. DOI: 10.1111/j.1753-0407.2011.00177.x.
  • Qin, L. J.; Lv, Y.; Huang, Q. Y. Meta-Analysis of Association of Common Variants in the KCNJ11-ABCC8 Region with Type 2 Diabetes. Genet. Mol. Res. 2013, 12, 2990–3002. DOI: 10.4238/2013.August.20.1.
  • Yang, L.; Zhou, X.; Luo, Y.; Sun, X.; Tang, Y.; Guo, W.; Han, X.; Ji, L. Association between KCNJ11 Gene Polymorphisms and Risk of Type 2 Diabetes Mellitus in East Asian Populations: A meta-analysis in 42,573 individuals . Mol. Biol. Rep. 2012, 39, 645–659. DOI: 10.1007/s11033-011-0782-6.
  • McTaggart, J.; Clark, R.; Ashcroft, F. The Role of the KATP Channel in Glucose Homeostasis in Health and Disease: More than Meets the Islet. J. Physiol. 2010, 588, 3201–3209. DOI: 10.1113/jphysiol.2010.191767.
  • Phani, N. M.; Guddattu, V.; Bellampalli, R.; Seenappa, V.; Adhikari, P.; Nagri, S. K.; D Souza, S. C.; Mundyat, G. P.; Satyamoorthy, K.; Rai, P. S. Population Specific Impact of Genetic Variants in KCNJ11 Gene to Type 2 Diabetes: A Case-Control and Meta-Analysis Study. PloS One. 2014, 9, e107021. DOI: 10.1371/journal.pone.0107021.
  • Ashcroft, F. M. KATP Channels and Insulin Secretion: A Key Role in Health and Disease. Biochem. Soc. Trans. 2006, 34, 243–246. DOI: 10.1042/BST0340243.
  • Dehwah, M. A.; Xu, A.; Huang, Q. MicroRNAs and Type 2 diabetes/obesity. J. Genet. Genomics. 2012, 39, 11–18. DOI: 10.1016/j.jgg.2011.11.007.
  • Koo, B. K.; Cho, Y. M.; Park, B. L.; Cheong, H. S.; Shin, H. D.; Jang, H. C.; Kim, S. Y.; Lee, H. K.; Park, K. S. Polymorphisms of KCNJ11 (Kir6.2 Gene) Are Associated with Type 2 Diabetes and Hypertension in the Korean Population. Diabetic Med. 2007, 24, 178–186. DOI: 10.1111/j.1464-5491.2006.02050.x.
  • Chavali, S.; Mahajan, A.; Tabassum, R.; Dwivedi, O. P.; Chauhan, G.; Ghosh, S.; Tandon, N.; Bharadwaj, D. Association of Variants in Genes Involved in Pancreatic β-cell Development and Function with Type 2 Diabetes in North Indians . J. Hum. Genet. 2011, 56, 695–700. DOI: 10.1038/jhg.2011.83.
  • Cruz, M.; Valladares-Salgado, A.; Garcia-Mena, J.; Ross, K.; Edwards, M.; Angeles-Martinez, J.; Ortega-Camarillo, C.; Escobedo de la Peña, J.; Burguete-Garcia, A. I.; Wacher-Rodarte, N.; et al. Candidate Gene Association Study Conditioning on Individual Ancestry in Patients with Type 2 Diabetes and Metabolic Syndrome from Mexico City. Diabetes. Metab. Res. Rev. 2010, 26, 261–270. DOI: 10.1002/dmrr.1082.
  • Feng, Y.; Mao, G.; Ren, X.; Xing, H.; Tang, G.; Li, Q.; Li, X.; Sun, L.; Yang, J.; Ma, W.; et al. Ser1369Ala Variant in Sulfonylurea Receptor Gene ABCC8 is Associated with Antidiabetic Efficacy of Gliclazide in Chinese Type 2 Diabetic Patients. Diabetes Care. 2008, 31, 1939–1944. DOI: 10.2337/dc07-2248.
  • Haghvirdizadeh, P.; Mohamed, Z.; Abdullah, N. A.; Haghvirdizadeh, P.; Haerian, M. S.; Haerian, B. S. KCNJ11: Genetic Polymorphisms and Risk of Diabetes Mellitus. J. Diabetes Res. 2015, 2015, 908152. DOI: 10.1155/2015/908152.
  • Liu, Z.; Zhang, Y. W.; Feng, Q. P.; Li, Y. F.; Wu, G. D.; Zuo, J.; Xiao, X. H.; Fang, F. D. Association Analysis of 30 Type 2 Diabetes Candidate Genes in Chinese Han Population. Zhongguo yi Xue ke Xue Yuan Xue Bao Acta Academiae Medicinae Sinicae 2006, 28, 124–128.
  • Rastegari, A.; Rabbani, M.; Sadeghi, H. M.; Imani, E. F.; Hasanzadeh, A.; Moazen, F. Association of KCNJ11 (E23K) Gene Polymorphism with Susceptibility to Type 2 Diabetes in Iranian Patients. Adv. Biomed. Res. 2015, 4, 1. DOI: 10.4103/2277-9175.148256.
  • Sakamoto, Y.; Inoue, H.; Keshavarz, P.; Miyawaki, K.; Yamaguchi, Y.; Moritani, M.; Kunika, K.; Nakamura, N.; Yoshikawa, T.; Yasui, N.; et al. SNPs in the KCNJ11-ABCC8 Gene Locus Are Associated with Type 2 Diabetes and Blood Pressure Levels in the Japanese Population. J. Hum. Genet. 2007, 52, 781–793. DOI: 10.1007/s10038-007-0190-x.
  • American Diabetes Association (ADA). Standards of Medical Care in Diabetes. Diabetes Care. 2017, 40, S4–S5.
  • Miller, S.; Dykes, D.; Polesky, H. A Simple Salting out Procedure for Extracting DNA from Human Nucleated Cells. Nucleic Acids Res. 1988, 16, 1215. DOI: 10.1093/nar/16.3.1215.
  • Khodaeian, M.; Enayati, S.; Tabatabaei-Malazy, O.; Amoli, M. M. Association between Genetic Variants and Diabetes Mellitus in Iranian Populations: A Systematic Review of Observational Studies. J. Diabetes Res. 2015, 2015, 585917. DOI: 10.1155/2015/585917.
  • Willer, C. J.; Bonnycastle, L. L.; Conneely, K. N.; Duren, W. L.; Jackson, A. U.; Scott, L. J.; Narisu, N.; Chines, P. S.; Skol, A.; Stringham, H. M.; et al. Screening of 134 Single Nucleotide Polymorphisms (SNPs) Previously Associated with Type 2 Diabetes Replicates Association with 12 SNPs in Nine Genes. Diabetes. 2007, 56, 256–264. DOI: 10.2337/db06-0461.
  • Gallardo-Blanco, H. L.; Villarreal-Perez, J. Z.; Cerda-Flores, R. M.; Figueroa, A.; Sanchez-Dominguez, C. N.; Gutierrez-Valverde, J. M.; Torres-Munoz, I. C.; Lavalle-Gonzalez, F. J.; Gallegos-Cabriales, E. C.; Martinez-Garza, L. E. Genetic Variants in KCNJ11, TCF7L2 and HNF4A Are Associated with Type 2 Diabetes, BMI and Dyslipidemia in Families of Northeastern Mexico: A Pilot Study. Exp. Ther. Med. 2017, 13, 523–529. DOI: 10.3892/etm.2016.3990.
  • Inoue, H.; Ferrer, J.; Warren-Perry, M.; Zhang, Y.; Millns, H.; Turner, R. C.; Elbein, S. C.; Hampe, C. L.; Suarez, B. K.; Inagaki, N.; et al. Sequence Variants in the Pancreatic Islet Beta-Cell Inwardly Rectifying K + Channel Kir6.2 (Bir) Gene: Identification and Lack of Role in Caucasian Patients with NIDDM. Diabetes. 1997, 46, 502–507. DOI: 10.2337/diab.46.3.502.
  • Khan, I. A.; Vattam, K. K.; Jahan, P.; Mukkavali, K. K.; Hasan, Q.; Rao, P. Correlation between KCNQ1 and KCNJ11 Gene Polymorphisms and Type 2 and Post-Transplant Diabetes Mellitus in the Asian Indian Population. Genes Dis. 2015, 2, 276–282. DOI: 10.1016/j.gendis.2015.02.009.
  • Liu, N. J.; Wu, H. H.; Li, Y. L.; Yang, Z.; Tao, X. M.; Du, Y. P.; Wang, X. C.; Lu, B.; Zhang, Z. Y.; Hu, R. M.; et al. An Analysis of the Association between a Polymorphism of KCNJ11 and Diabetic Retinopathy in a Chinese Han Population. Eur. J. Med. Res. 2015, 20, 3. DOI: 10.1186/s40001-014-0075-3.
  • Poorolajal, J. Resistance Economy and New Population Policy in Iran. J. Res. Health Sci. 2017, 17, e00367.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.