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Citations to this article

Muscle Krüppel-like factor 15 regulates lipid flux and systemic metabolic homeostasis
Liyan Fan, … , Christopher B. Newgard, Mukesh K. Jain
Liyan Fan, … , Christopher B. Newgard, Mukesh K. Jain
Published February 15, 2021
Citation Information: J Clin Invest. 2021;131(4):e139496. https://doi.org/10.1172/JCI139496.
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Concise Communication Metabolism Muscle biology Article has an altmetric score of 78

Muscle Krüppel-like factor 15 regulates lipid flux and systemic metabolic homeostasis

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Abstract

Skeletal muscle is a major determinant of systemic metabolic homeostasis that plays a critical role in glucose metabolism and insulin sensitivity. By contrast, despite being a major user of fatty acids, and evidence that muscular disorders can lead to abnormal lipid deposition (e.g., nonalcoholic fatty liver disease in myopathies), our understanding of skeletal muscle regulation of systemic lipid homeostasis is not well understood. Here we show that skeletal muscle Krüppel-like factor 15 (KLF15) coordinates pathways central to systemic lipid homeostasis under basal conditions and in response to nutrient overload. Mice with skeletal muscle–specific KLF15 deletion demonstrated (a) reduced expression of key targets involved in lipid uptake, mitochondrial transport, and utilization, (b) elevated circulating lipids, (c) insulin resistance/glucose intolerance, and (d) increased lipid deposition in white adipose tissue and liver. Strikingly, a diet rich in short-chain fatty acids bypassed these defects in lipid flux and ameliorated aspects of metabolic dysregulation. Together, these findings establish skeletal muscle control of lipid flux as critical to systemic lipid homeostasis and metabolic health.

Authors

Liyan Fan, David R. Sweet, Domenick A. Prosdocimo, Vinesh Vinayachandran, Ernest R. Chan, Rongli Zhang, Olga Ilkayeva, Yuan Lu, Komal S. Keerthy, Chloe E. Booth, Christopher B. Newgard, Mukesh K. Jain

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Total citations by year

Year: 2025 2024 2023 2022 2021 Total
Citations: 5 2 6 6 1 20
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Citations to this article (20)

Title and authors Publication Year
Transcriptional regulation of autophagy in skeletal muscle stem cells
Gopal Krishnan PD, Lee WX, Goh KY, Choy SM, Turqueza LR, Lim ZH, Tang HW
Disease Models & Mechanisms 2025
A multiomic network approach uncovers disease modifying mechanisms of inborn errors of metabolism
Bender A, Ranea-Robles P, Williams EG, Mirzaian M, Heimel JA, Levelt CN, Wanders RJ, Aerts JM, Zhu J, Auwerx J, Houten SM, Argmann CA
bioRxiv 2025
Loss of CTRP10 results in female obesity with preserved metabolic health
Chen F, Sarver DC, Saqib M, Velez LM, Aja S, Seldin MM, Wong GW
eLife 2025
Effect of KLF15-Mediated Circadian Rhythm on Myocardial Infarction: A Narrative Review
Zhao J, Chen Z, Yang J, Duan L, Yang H, Cai D, Zhao Z
International Journal of Molecular Sciences 2025
A multiomic network approach to uncover disease modifying mechanisms of inborn errors of metabolism
Bender A, Ranea-Robles P, Williams EG, Mirzaian M, Heimel JA, Levelt CN, Wanders RJ, Aerts JM, Zhu J, Auwerx J, Houten SM, Argmann CA
Journal of inherited metabolic disease 2025
KLF13 restrains Dll4-muscular Notch2 axis to improve the muscle atrophy.
Yang S, Xiong L, Yang G, Xiang J, Li L, Kang L, Liang Z
Journal of cachexia, sarcopenia and muscle 2024
KLF15 suppresses stemness of pancreatic cancer by decreasing USP21-mediated Nanog stability.
Jiang W, Liu L, Wang M, Li X, Zhou T, Hou X, Qiao L, Chen C, Zuo D, Liu J, Ren L
Cellular and molecular life sciences : CMLS 2024
The KLF7/PFKL/ACADL axis modulates cardiac metabolic remodelling during cardiac hypertrophy in male mice
Wang C, Qiao S, Zhao Y, Tian H, Yan W, Hou X, Wang R, Zhang B, Yang C, Zhu F, Jiao Y, Jin J, Chen Y, Tian W
Nature Communications 2023
Specificity Proteins (SP) and Krüppel-like Factors (KLF) in Liver Physiology and Pathology
Yerra VG, Drosatos K
International journal of molecular sciences 2023
A TGF-β/KLF10 signaling axis regulates atrophy-associated genes to induce muscle wasting in pancreatic cancer
Dasgupta A, Gibbard DF, Schmitt RE, Arneson-Wissink PC, Ducharme AM, Bruinsma ES, Hawse JR, Jatoi A, Doles JD
Proceedings of the National Academy of Sciences 2023
Krüppel-like Factor 15 Suppresses Ferroptosis by Activating an NRF2/GPX4 Signal to Protect against Folic Acid-Induced Acute Kidney Injury
Yang X, Dong S, Fan Y, Xia Y, Yang F, Chen Z, Chen D, Zhang M, Liang D, Zeng C
International journal of molecular sciences 2023
Loss of CTRP10 results in female obesity with preserved metabolic health
Chen F, Sarver DC, Saqib M, Velez LM, Aja S, Seldin MM, Wong GW
2023
The Molecular Mechanisms of Fuel Utilization during Exercise
Pi A, Villivalam SD, Kang S
Biology 2023
KLF15 overexpression in myocytes fails to ameliorate ALS-related pathology or extend the lifespan of SOD1G93A mice
R Massopust, D Juros, D Shapiro, M Lopes, S Haldar, T Taetzsch, G Valdez
Neurobiology of Disease 2022
Tent5a modulates muscle fiber formation in adolescent idiopathic scoliosis via maintenance of myogenin expression
M Luo, H Yang, D Wu, X You, S Huang, Y Song
Cell Proliferation 2022
Physical Activity Rewires the Human Brain against Neurodegeneration
Santiago JA, Quinn JP, Potashkin JA
International journal of molecular sciences 2022
Transcription factors KLF15 and PPARδ cooperatively orchestrate genome-wide regulation of lipid metabolism in skeletal muscle
Fan L, Sweet DR, Fan EK, Prosdocimo DA, Madera A, Jiang Z, Padmanabhan R, Haldar SM, Vinayachandran V, Jain MK
The Journal of biological chemistry 2022
SREBP1 regulates Lgals3 activation in response to cholesterol loading
Li J, Shen H, Owens GK, Guo LW
2022
KLF15 controls brown adipose tissue transcriptional flexibility and metabolism in response to various energetic demands.
Fan L, Lesser AF, Sweet DR, Keerthy KS, Lu Y, Chan ER, Vinayachandran V, Ilkayeva O, Das T, Newgard CB, Jain MK
iScience 2022
Transcriptome Analysis of Immune Receptor Activation and Energy Metabolism Reduction as the Underlying Mechanisms in Interleukin-6-Induced Skeletal Muscle Atrophy
H Sun, J Sun, M Li, L Qian, L Zhang, Z Huang, Y Shen, BY Law, L Liu, X Gu
Frontiers in immunology 2021

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