grant

Examining how the novel S64F MAFA variant produces glucose intolerance or hypoglycemia in a sex-dependent manner

Organization VANDERBILT UNIVERSITY MEDICAL CENTERLocation NASHVILLE, UNITED STATESPosted 1 Jul 2022Deadline 31 May 2027
NIHUS FederalResearch GrantFY202510 year old10 years of age21+ years oldAcuteAdultAdult HumanAdult-Onset Diabetes MellitusAgingAmericanApoplexyApoptosisApoptosis PathwayAutomobile DrivingB blood cellsB cellB cellsB-CellsB-LymphocytesB-cellB9 endocrine pancreasBET bromodomain inhibitorBET inhibitorBETiBasal Transcription FactorBasal transcription factor genesBeta CellBeta Cell NeoplasmBeta Cell Neoplasm of the PancreasBeta Cell Tumor of the PancreasBirthBlood GlucoseBlood SugarBrain Vascular AccidentBromodomain and Extra-Terminal motif inhibitorBromodomains and extra-terminal domain inhibitorCancersCardiac infarctionCell AgingCell BodyCell Communication and SignalingCell Cycle ControlCell Cycle RegulationCell FunctionCell PhysiologyCell ProcessCell SenescenceCell SignalingCellsCellular AgingCellular FunctionCellular PhysiologyCellular ProcessCellular SenescenceCerebral StrokeCerebrovascular ApoplexyCerebrovascular StrokeCharacteristicsChronicChronic DiseaseChronic IllnessClassificationCollectionCuriositiesD-GlucoseDNA mutationData SetDevelopmentDextroseDiabetes MellitusDiagnosisDifferences between sexesDiffers between sexesDiseaseDisorderDysfunctionEndocrine Gland SecretionEndocrine PancreasExhibitsFamilyFemaleFunctional disorderGender BiasGene ExpressionGene ModifiedGeneral Transcription Factor GeneGeneral Transcription FactorsGenetic ChangeGenetic defectGenetic mutationGlucoseGlucose IntoleranceHealthHeterogeneityHormonesHumanHumulin RHyperglycemiaHypoglycemiaImmunocompromisedImmunocompromised HostImmunocompromised PatientImmunosuppressed HostImpairmentIndividualInsulinInsulin CellInsulin Secreting CellInsulin-Producing Neoplasm of the Islet CellsInsulin-Producing Tumor of the Islet CellsInsulomaIntermediary MetabolismIntracellular Communication and SignalingInvestigationIslands of LangerhansIslet CellIslets of LangerhansKetosis-Resistant Diabetes MellitusL-SerineLifeLinkMalignant NeoplasmsMalignant TumorMature B-CellMature B-LymphocyteMaturity-Onset Diabetes MellitusMediatingMetabolic ProcessesMetabolismMiceMice MammalsMinorModelingModern ManMolecularMolecular FingerprintingMolecular ProfilingMorbidityMorbidity - disease rateMurineMusMutationMyocardial InfarctMyocardial InfarctionNIDDMNesidioblastsNon-Insulin Dependent DiabetesNon-Insulin-Dependent Diabetes MellitusNoninsulin Dependent DiabetesNoninsulin Dependent Diabetes MellitusNovolin RPancreasPancreaticPancreatic Beta Cell Insulin Producing NeoplasmPancreatic Beta Cell Insulin Producing TumorPancreatic Beta Cell TumorPancreatic IsletsPancreatic beta CellPancreatic β-CellPars endocrina pancreatisParturitionPathogenicityPatientsPhenotypePhenylalaninePhysiologicPhysiologicalPhysiopathologyPoint MutationPopulationPositionPositioning AttributePremature AgingPremature aging syndromeProductionProgrammed Cell DeathPropertyProteinsPublishingRegular InsulinReplicative SenescenceResistanceRisk FactorsRodent ModelSerineSex BiasSex DifferencesSexual differencesSignal TransductionSignal Transduction SystemsSignalingSlow-Onset Diabetes MellitusStable Diabetes MellitusStrokeStructure of beta Cell of isletSubcellular ProcessSystematicsT2 DMT2DT2DMTechnologyTestingTherapeutic HormoneTranscription ActivatorTranscription CoactivatorTranscription Factor CoactivatorTranscription Factor Proto-OncogeneTranscription factor genesTranscriptional Activator/CoactivatorTransplantationTreatment FailureType 2 Diabetes MellitusType 2 diabetesType II Diabetes MellitusType II diabetesVariantVariationWomanWorkaberrant agingabnormal agingadult onset diabetesadulthoodage 10 yearsage associatedage correlatedage dependentage linkedage relatedage specificagedbeta-Cell Adenomabeta-Cell Tumorbiological signal transductionblood glucose regulationbrain attackbromodomain extra-terminal inhibitorburden of diseaseburden of illnesscardiac infarctcerebral vascular accidentcerebrovascular accidentchronic disordercoronary attackcoronary infarctcoronary infarctioncustomized therapycustomized treatmentdevelop therapydevelopmentaldiabetesdifferential expressiondifferentially expresseddisease burdendisease causing variantdisease-causing alleledisease-causing mutationdrivingdysfunctional age related changedysfunctional aginggene modificationgenetically modifiedgenome mutationglucose controlglucose homeostasisglucose regulationhealthy aginghealthy human agingheart attackheart infarctheart infarctionhuman diseasehuman femalehyperglycemichypoglycemichypoglycemic episodesimmunosuppressed patientimpaired agingimprovedin vivoindividualized medicineindividualized patient treatmentindividualized therapeutic strategyindividualized therapyindividualized treatmentinsightinsulin secretioninsulinomaintervention developmentisletketosis resistant diabetesmaladaptive agingmalemalignancymaturity onset diabetesmenmolecular profilemolecular signaturemortalitymouse modelmurine modelmutantneoplasm/cancernew therapeutic approachnew therapeutic interventionnew therapeutic strategiesnew therapy approachesnew treatment approachnew treatment strategynovelnovel therapeutic approachnovel therapeutic interventionnovel therapeutic strategiesnovel therapy approachpancreas beta cellpancreas β cellpancreatic b-cellpathogenic allelepathogenic variantpathological age related changespathological agingpathophysiologypatient specific therapiespatient specific treatmentpostnatalprematureprematuritypreservationreplicative agingresistantresponsescRNA sequencingscRNA-seqsenescencesenescence and its associated secretory phenotypesenescence associated secretomesenescence associated secretory factorssenescence associated secretory pathwaysenescence associated secretory phenotypesenescence associated secretory programsenescence associated secretory proteinssenescentsenescent associated secretomesenescent associated secretory phenotypesexsex based differencessex dimorphismsex-dependent differencessex-related differencessex-specific differencessexual dimorphismsexually dimorphicsingle cell RNA-seqsingle cell RNAseqsingle cell expression profilingsingle cell transcriptomic profilingsingle-cell RNA sequencingstrokedstrokestailored medical treatmenttailored therapytailored treatmentten year oldten years of agetherapy developmenttherapy failuretranscription factortranscriptional differencestranscriptomicstransplanttreatment developmenttype 2 DMtype II DMtype two diabetesunique treatmentβ-cellβ-cellsβCell
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Full Description

PROJECT ABSTRACT
As of 2018, 30.3 million Americans have been diagnosed with diabetes (10% of the U.S. population with a

male sex bias). Its close associations with many chronic diseases, such as heart attacks, strokes, and cancers,

make diabetes a leading risk factor for morbidity and mortality. In all forms of diabetes, the inability to maintain

normal glucose levels results from progressive dysfunction and eventual loss of insulin-producing b-cells in the

pancreas. With high rates of treatment failure on standard therapy, developing new therapeutic approaches to

preserve or even enhance b-cell function is a priority. Furthermore, differences in metabolism between men

and women during healthy aging and disease are appreciated but poorly understood.

Pancreatic b-cells require several key factors to appropriately secrete insulin. One such factor is MafA, a

transcription factor fundamental to mature b-cell function. The early loss of human MafA (MAFA) in b-cells in

patients with type 2 diabetes highlights its importance to human b-cell health. In addition, a naturally occurring,

genetic mutation in MAFA (S64F MAFA) was recently identified to predispose carriers to either familial, adult-

onset diabetes or hypoglycemia (low blood glucose). Curiously, S64F MAFA-associated diabetes is much

more prevalent in men while women tend to present with hypoglycemia. To better understand the sex-

dependent effects of this variant, we generated a mouse model harboring this mutation. This model shows the

expected sex-dependent effects seen in humans, suggesting similar mechanisms between mice and humans.

Male S64F MAFA mice were hyperglycemic due to widespread, premature b-cell aging and senescence, while

female S64F MAFA mice were hypoglycemic by a mechanism which is not yet clearly defined. However, our

preliminary studies suggest that S64F MAFA creates different b-cell subtypes in females, one of which is

hyperfunctional. Taken together, these results suggest that S64F MAFA can incur diverse b-cell responses to

produce sex-dependent diseases: diabetes (b-cell hypofunction) and hypoglycemia (b-cell hyperfunction).

This investigation will identify and compare the diverse molecular responses to S64F MAFA in male and

female b-cells across mice and humans to understand the sex-dependent, b-cell responses unique to human

b-cells. We will first use the penetrant, proof-of-principle S64F MAFA mouse model which mimics several

aspects of human disease to identify the diverse b-cell populations by single cell transcriptomics. For example,

diversity in premature aging signatures will be related to the dysfunction seen in senescent, male S64F MAFA

b-cells. We will then investigate the molecular and functional responses to the S64F MAFA protein in

genetically modified, male and female human b-cells using novel pseudoislet technology to identify targets

unique to human b-cell function. In sum, our work will advance fundamental understanding of sex-dependent

b-cell responses in humans. Mechanisms underlying a relative male vulnerability and female resistance to

diabetes in this model can be harnessed to develop therapies tailored to the individual.

Grant Number: 5K08DK132507-04
NIH Institute/Center: NIH

Principal Investigator: Jeeyeon Cha

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