학술논문

Type 2 Diabetes Variants Disrupt Function of SLC16A11 through Two Distinct Mechanisms
Document Type
article
Author
Rusu, VictorHoch, EitanMercader, Josep MTenen, Danielle EGymrek, MelissaHartigan, Christina RDeRan, Michaelvon Grotthuss, MarcinFontanillas, PierreSpooner, AlexandraGuzman, GaelenDeik, Amy APierce, Kerry ADennis, CourtneyClish, Clary BCarr, Steven AWagner, Bridget KSchenone, MonicaNg, Maggie CYChen, Brian HConsortium, MEDIAShriner, DanielLi, JiangChen, Wei-MinGuo, XiuqingLiu, JiankangBielinski, Suzette JYanek, Lisa RNalls, Michael AComeau, Mary ERasmussen-Torvik, Laura JJensen, Richard AEvans, Daniel SSun, Yan VAn, PingPatel, Sanjay RLu, YingchangLong, JirongArmstrong, Loren LWagenknecht, LynneYang, LingyaoSnively, Beverly MPalmer, Nicholette DMudgal, PoorvaLangefeld, Carl DKeene, Keith LFreedman, Barry IMychaleckyj, Josyf CNayak, UmaRaffel, Leslie JGoodarzi, Mark OChen, Y-D IdaTaylor, Herman ACorrea, AdolfoSims, MarioCouper, DavidPankow, James SBoerwinkle, EricAdeyemo, AdebowaleDoumatey, AyoChen, GuanjieMathias, Rasika AVaidya, DhananjaySingleton, Andrew BZonderman, Alan BIgo, Robert PSedor, John RConsortium, the FINDKabagambe, Edmond KSiscovick, David SMcKnight, BarbaraRice, KennethLiu, YongmeiHsueh, Wen-ChiZhao, WeiBielak, Lawrence FKraja, AldiProvince, Michael ABottinger, Erwin PGottesman, OmriCai, QiuyinZheng, WeiBlot, William JLowe, William LPacheco, Jennifer ACrawford, Dana CConsortium, the eMERGEConsortium, the DIAGRAMGrundberg, ElinConsortium, the MuTHERRich, Stephen SHayes, M GeoffreyShu, Xiao-OuLoos, Ruth JFBorecki, Ingrid BPeyser, Patricia ACummings, Steven RPsaty, Bruce M
Source
Cell. 170(1)
Subject
Biological Sciences
Genetics
Clinical Research
Diabetes
Digestive Diseases
Liver Disease
Aetiology
2.1 Biological and endogenous factors
Metabolic and endocrine
Basigin
Cell Membrane
Chromosomes
Human
Pair 17
Diabetes Mellitus
Type 2
Gene Knockdown Techniques
Haplotypes
Hepatocytes
Heterozygote
Histone Code
Humans
Liver
Models
Molecular
Monocarboxylic Acid Transporters
MEDIA Consortium
SIGMA T2D Consortium
MCT11
SLC16A11
disease mechanism
fatty acid metabolism
genetics
lipid metabolism
monocarboxylates
precision medicine
solute carrier
type 2 diabetes
Medical and Health Sciences
Developmental Biology
Biological sciences
Biomedical and clinical sciences
Language
Abstract
Type 2 diabetes (T2D) affects Latinos at twice the rate seen in populations of European descent. We recently identified a risk haplotype spanning SLC16A11 that explains ∼20% of the increased T2D prevalence in Mexico. Here, through genetic fine-mapping, we define a set of tightly linked variants likely to contain the causal allele(s). We show that variants on the T2D-associated haplotype have two distinct effects: (1) decreasing SLC16A11 expression in liver and (2) disrupting a key interaction with basigin, thereby reducing cell-surface localization. Both independent mechanisms reduce SLC16A11 function and suggest SLC16A11 is the causal gene at this locus. To gain insight into how SLC16A11 disruption impacts T2D risk, we demonstrate that SLC16A11 is a proton-coupled monocarboxylate transporter and that genetic perturbation of SLC16A11 induces changes in fatty acid and lipid metabolism that are associated with increased T2D risk. Our findings suggest that increasing SLC16A11 function could be therapeutically beneficial for T2D. VIDEO ABSTRACT.