Evidence mapPaperPMID 42299666Full record

ArticleCirculation research2026

TFEB Antagonizes Cardiac Hypertrophy and Failure by Enhancing Lysosomal Capacity and Mitochondrial Function.

Daniel Daou, Subhajit Das Gupta, Anip Anand, Herman I May, Nan Jiang, Sebastián Urquiza-Zurich, Camila I Irion, Anwarul Ferdous, Valeria Garrido-Moreno, Mayarling F Troncoso and 14 more

Abstract read
In one paragraph

Article in Circulation research, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 1 paper.

0numbers the graph read from it
0cells of the map it votes in
1citing papers in PubMed
field-weighted citation impact
1 · What the graph read from it

What it found

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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

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3 · Its place in the literature

Who cites it

1 citing paper in PubMed.

  1. TFEB Deficiency Impairs Male Fertility Through Mitochondrial Dysfunction.FASEB journal : official publication of the Federation of American Societies for Experimental Biology · 2026
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4 · The record

Corrections and comments

5 · Who and what money

Authors and funding

24 authors.

Daniel Daou *Department of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0002-9912-6855
Subhajit Das Gupta *Department of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0003-2165-7805
Anip AnandDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0002-5198-2855
Herman I MayDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0002-9264-2320
Nan JiangDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0003-2598-0319
Sebastián Urquiza-ZurichAdvanced Center for Chronic Diseases (ACCDiS), Faculty of Chemical & Pharmaceutical Sciences & Faculty of Medicine, University of Chile, Santiago (S.U.-Z., V.G.-M., M.F.T., F.O.-S., V.M.-C., S.L.).ORCID 0000-0002-8064-330X
Camila I IrionDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0001-8143-043X
Anwarul FerdousDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0002-9285-7719
Valeria Garrido-MorenoDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0002-3298-2622
Mayarling F TroncosoAdvanced Center for Chronic Diseases (ACCDiS), Faculty of Chemical & Pharmaceutical Sciences & Faculty of Medicine, University of Chile, Santiago (S.U.-Z., V.G.-M., M.F.T., F.O.-S., V.M.-C., S.L.).
Nicholas NguyenDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0002-5956-6856
Lisandro Maya-RamosDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0002-4424-7537
Diana Dad ZadaDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0009-0003-0021-6565
Francisco Olivares-SilvaDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0002-5794-4200
Guo ChenDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0009-0008-0369-1739
Feng WuDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0003-4770-6177
Abhinav DiwanMedicine Service, Saint Louis VA Medical Center, MO (A.D.).ORCID 0000-0001-7554-4772
Michael KinterAging and Metabolism Research Program, Oklahoma Medical Research Foundation (M.K.).ORCID 0000-0001-7409-8918
Vinicius Maracaja-CoutinhoAdvanced Center for Chronic Diseases (ACCDiS), Faculty of Chemical & Pharmaceutical Sciences & Faculty of Medicine, University of Chile, Santiago (S.U.-Z., V.G.-M., M.F.T., F.O.-S., V.M.-C., S.L.).ORCID 0000-0002-8873-9381
Beverly A RothermelDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0001-9037-6703
Luke I SzwedaDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0003-1858-5484
Sergio LavanderoDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0003-4258-1483
Thomas G GilletteDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0002-7617-3544
Joseph A HillDepartment of Internal Medicine (Cardiology) (D.D., S.D.G., A.A., H.I.M., N.J., C.I.I., A.F., V.G.-M., N.N., L.M.-R., D.D.Z., F.O.-S., G.C., F.W., B.A.R., L.I.S., S.L., T.G.G., J.A.H.), UT Southwestern Medical Center, Dallas, TX.ORCID 0000-0002-5379-1614

Funding

Molecular Mechanisms of HFpEF-associated Atrial FibrillationR01HL155765 · NHLBI · UT SOUTHWESTERN MEDICAL CENTER · PI THOMAS G GILLETTE, JOSEPH A HILL · 2022 to 2024
$1.2M
ETS2-dependent control in cardiomyocyte ischemia/reperfusion injuryR01HL164586 · UT SOUTHWESTERN MEDICAL CENTER · 2025 to 2025
$618k
NHLBI NIH HHS R01 HL128215NHLBI NIH HHS R01 HL147933NHLBI NIH HHS R01 HL155765NHLBI NIH HHS R01 HL164586NIH HHS S10 OD034385
6 · The paper itself

Abstract

backgroundPathological cardiac remodeling and afterload-induced increases in energy demand contribute to heart failure (HF). Lysosome-assisted processes, such as autophagy, coupled with alterations in mitochondrial oxidative capacity, are critical regulators of this response. Furthermore, the lysosome is a hub for multiple signaling pathways governing hypertrophic growth. TFEB (transcription factor EB) has emerged as a key regulator of lysosomal genes and mitochondrial function in multiple tissues, especially in response to external stress.

methodsLeveraging a cardiomyocyte-specific TFEB knockout mouse (CTKO), pressure overload was induced by transverse aortic constriction (TAC) to elucidate the role of TFEB under hypertrophic stress conditions. Echocardiography was employed to assess cardiac function, and hearts were subsequently harvested for transcriptomic, proteomic, and metabolomic analyses. To glean further insight into the molecular mechanisms involved, we studied neonatal rat ventricular myocytes exposed to phenylephrine, an in vitro model of cardiomyocyte hypertrophy.

resultsWe report that TFEB is rapidly activated and translocates to the nucleus in cardiomyocytes exposed to hypertrophic stress conditions, triggering a lysosomal gene program independent of autophagy gene changes. At baseline, contractile function measured by echocardiography appeared normal in these mice compared with their Cre-negative littermates. However, in pressure-overload stress induced by TAC, CTKO mice manifested an amplified hypertrophic response, leading rapidly to HF. Unlike WT hearts, CTKO hearts failed to increase lysosomal capacity after TAC. They manifested an increase in the steady-state levels of autophagosome-associated proteins, such as LC3II and p62, as well as accumulation of ubiquitinated proteins, suggesting a defect in protein turnover. Interestingly, CTKO mice harbored altered mitochondrial structure, reduced oxidative capacity, and reduced abundance of peroxisome PGC-1α-b (proliferator-activated receptor-1 alpha-b). Furthermore, CTKO hearts manifested reduced expression of key enzymes within metabolic pathways essential for normal myocardial metabolism, including fatty acid metabolism, carbon metabolism, and branched-chain amino acid metabolism. Surprisingly, AMPK (AMP-activated protein kinase) signaling, while normal at baseline, was significantly decreased in CTKO hearts after TAC. This reliance on TFEB for growth trigger-induced AMPK signaling was also observed in vitro in cells exposed to phenylephrine, as were the antihypertrophic effects of TFEB activation, supporting a direct role of TFEB in this process. Finally, we report that exogenous activation of AMPK in the absence of TFEB can completely rescue the exacerbated hypertrophic response both in vitro and in vivo, independent of lysosomal function. Notably, blunting of the hypertrophic response did not impact the decreased contractile function observed in TAC-treated CTKO mice, highlighting the importance of TFEB in regulating mitochondrial function in response to stress.

conclusionsOur findings demonstrate that TFEB antagonizes pathological hypertrophic cardiac remodeling through upregulation of lysosomal capacity, maintaining mitochondrial energetic function, and promoting AMPK signaling.

Indexed as

Basic Helix-Loop-Helix Leucine Zipper Transcription FactorsCardiomegalyHeart FailureLysosomesMitochondria, HeartMyocytes, CardiacAnimalsAutophagyCells, CulturedMaleMiceMice, Inbred C57BLMice, KnockoutRatsSignal TransductionBasic Helix-Loop-Helix Leucine Zipper Transcription FactorsTcfeb protein, mouseTFEB protein, ratautophagyheart failurehypertrophylysosomesproteomics

Identifiers

PMID42299666
PMCPMC13331260

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.