Skip Navigation
Skip to contents

Endocrinol Metab : Endocrinology and Metabolism

clarivate
OPEN ACCESS
SEARCH
Search

Search

Page Path
HOME > Search
1 "Jung Woo Han"
Filter
Filter
Article type
Keywords
Publication year
Authors
Original Article
Clinical Study
Calpain-10 and Adiponectin Gene Polymorphisms in Korean Type 2 Diabetes Patients
Ji Sun Nam, Jung Woo Han, Sang Bae Lee, Ji Hong You, Min Jin Kim, Shinae Kang, Jong Suk Park, Chul Woo Ahn
Endocrinol Metab. 2018;33(3):364-371.   Published online September 18, 2018
DOI: https://doi.org/10.3803/EnM.2018.33.3.364
  • 7,054 View
  • 63 Download
  • 11 Web of Science
  • 11 Crossref
AbstractAbstract PDFPubReader   ePub   
Background

Genetic variations in calpain-10 and adiponectin gene are known to influence insulin secretion and resistance in type 2 diabetes mellitus. Recently, several single nucleotide polymorphisms (SNPs) in calpain-10 and adiponectin gene have been reported to be associated with type 2 diabetes and various metabolic derangements. We investigated the associations between specific calpain-10 and adiponectin gene polymorphisms and Korean type 2 diabetes patients.

Methods

Overall, 249 type 2 diabetes patients and 131 non-diabetic control subjects were enrolled in this study. All the subjects were genotyped for SNP-43 and -63 of calpain-10 gene and G276T and T45G frequencies of the adiponectin gene. The clinical characteristics and measure of glucose metabolism were compared within these genotypes.

Results

Among calpain-10 polymorphisms, SNP-63 T/T were more frequent in diabetes patients, and single SNP-63 increases the susceptibility to type 2 diabetes. However, SNP-43 in calpain-10 and T45G and intron G276T in adiponectin gene were not significantly associated with diabetes, insulin resistance, nor insulin secretion.

Conclusion

Variations in calpain-10, SNP-63 seems to increase the susceptibility to type 2 diabetes in Koreans while SNP-43 and adiponectin SNP-45, -276 are not associated with impaired glucose metabolism.

Citations

Citations to this article as recorded by  
  • Polymorphisms Involved in Insulin Resistance and Metabolic Inflammation: Influence of Nutrients and Dietary Interventions
    Graziela Biude Silva Duarte, Gabriela de Freitas Laiber Pascoal, Marcelo Macedo Rogero
    Metabolites.2025; 15(4): 245.     CrossRef
  • Exonic Deletion in MAN1B1 and a Missense Substitution in CAPN10 Causes Truncal Obesity, Type 2 Diabetes, Delayed Motor Development and Mild Intellectual Disability
    S. Naudhani, F. K. Bazai, A. Ahmad, H. Tayyab, M. T. Pervez, A. Zafar, S. A. Shah, N. Raheem, M. Tariq, M. Saleem, R. Sheikh, S. Daud
    Russian Journal of Genetics.2025; 61(6): 726.     CrossRef
  • Influence of OCT2 gene variants on metformin efficacy in type 2 diabetes: insights into pharmacogenomics and drug interactions
    Ma’mon M. Hatmal, Omar Abuyaman, Mohammad A. I. Al-Hatamleh, Heba Tayyem, Amin N. Olaimat, Ali Mussa, Iman Aolymat, Aymen Abuawad, Mohanad Odeh, Rana Qawaqzeh
    Journal of Translational Medicine.2025;[Epub]     CrossRef
  • Adiponectin gene polymorphism and TyPE 2 diabetes MellitUS: Contrasting genetic RISKS in overdominant vs recessive and allele models – an updated meta – analysis
    Santhini Gopalakrishnan, Santhi Priya Sobha, Karpagavel Lakshmanan
    Human Gene.2025; 46: 201463.     CrossRef
  • Calpain 10 SNP43 G > A polymorphism and type 2 diabetes mellitus susceptibility in an Iraqi population
    Ahmed J. Mohammed, Rawaa Behlul, Aumaima Tariq Abed
    Egyptian Journal of Basic and Applied Sciences.2025; 12(1): 1.     CrossRef
  • Decoding type 2 diabetes mellitus genetic risk variants in Pakistani Pashtun ethnic population using the nascent whole exome sequencing and MassARRAY genotyping: A case-control association study
    Asif Jan, Zakiullah, Sajid Ali, Basir Muhammad, Amina Arshad, Yasar Shah, Haji Bahadur, Hamayun Khan, Fazli Khuda, Rani Akbar, Kiran Ijaz, Giuseppe Novelli
    PLOS ONE.2023; 18(1): e0281070.     CrossRef
  • Silencing LncRNA PVT1 Reverses High Glucose-Induced Regulation of the High Expression of PVT1 in HRMECs by Targeting miR-128-3p
    Xuyang Wang, Wangling Chen, Wei Lao, Yunxin Chen
    Hormone and Metabolic Research.2022; 54(02): 119.     CrossRef
  • Association of CAPN10 (SNP-19) genetic polymorphism and obesity with T2DM: a study on Bengali Hindu caste population
    Pranabesh Sarkar, Diptendu Chatterjee, Arup Ratan Bandyopadhyay
    International Journal of Diabetes in Developing Countries.2021; 41(1): 37.     CrossRef
  • Association of Candidate Gene Polymorphism with Metabolic Syndrome among Mongolian Subjects: A Case-Control Study
    Ariunbold Chuluun-Erdene, Orgil Sengeragchaa, Tsend-Ayush Altangerel, Purevjal Sanjmyatav, Batnaran Dagdan, Solongo Battulga, Lundiamaa Enkhbat, Nyamjav Byambasuren, Munkhzol Malchinkhuu, Munkhtstetseg Janlav
    Medical Sciences.2020; 8(3): 38.     CrossRef
  • Meta-analysis of the association between adiponectin SNP 45, SNP 276, and type 2 diabetes mellitus
    Yuwei Dong, Gongping Huang, Xin Wang, Zhaoming Chu, Jingzhi Miao, Houwen Zhou, Mingqing Xu
    PLOS ONE.2020; 15(10): e0241078.     CrossRef
  • Association of three SNPs in adiponectin gene with lipid traits of Tianzhu Black Muscovy (Cairina moschata)
    Yuan-Yu Qin, Yi-Yu Zhang, Hua-Lun Luo, Lei Wu
    Molecular Biology Reports.2019; 46(1): 325.     CrossRef
Close layer

Endocrinol Metab : Endocrinology and Metabolism
TOP