Статья

Mucin-2 knockout is a model of intercellular junction defects, mitochondrial damage and ATP depletion in the intestinal epithelium

M. Borisova, K. Achasova, K. Morozova, E. Andreyeva, E. Litvinova, A. Ogienko, M. Morozova, M. Berkaeva, E. Kiseleva, E. Kozhevnikova,
2020

The disruption of the protective intestinal barrier—the ‘leaky gut’—is a common complication of the inflammatory bowel disease. There is limited data on the mechanisms of the intestinal barrier disruption upon low-grade inflammation characteristic of patients with inflammatory bowel disease in clinical remission. Thus, animal models that recapitulate the complexity of chronic intestinal inflammation in vivo are of particular interest. In this study, we used Mucin-2 (Muc2) knockout mice predisposed to colitis to study intestinal barrier upon chronic inflammation. We used 4-kDa FITC-Dextran assay and transmission electron microscopy to demonstrate the increased intestinal permeability and morphological defects in intercellular junctions in Muc2 knockout mice. Confocal microscopy revealed the disruption of the apical F-actin cytoskeleton and delocalization of tight junction protein Claudin-3 from the membrane. We further demonstrate mitochondrial damage, impaired oxygen consumption and the reduction of the intestinal ATP content in Muc2 knockout mice. Finally, we show that chemically induced mitochondrial uncoupling in the wild type mice mimics the intestinal barrier disruption in vivo and causes partial loss of F-actin and membrane localization of Claudin-3. We propose that mitochondrial damage and metabolic shifts during chronic inflammation contribute to the leaky gut syndrome in Muc2 knockout animal model of colitis.

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  • 1. Version of Record от 2020-12-01

Метаданные

Об авторах
  • M. Borisova
    Institute of Cytology and Genetics, Siberian Branch of the Russian Academy of Sciences
  • K. Achasova
    Institute of Molecular and Cellular Biology of the Siberian Branch of the RAS, State Scientific-Research Institute of Physiology and Basic Medicine, Russian Academy of Sciences
  • K. Morozova
    Institute of Cytology and Genetics, Siberian Branch of the Russian Academy of Sciences
  • E. Andreyeva
    Institute of Molecular and Cellular Biology of the Siberian Branch of the RAS
  • E. Litvinova
    State Scientific-Research Institute of Physiology and Basic Medicine, Russian Academy of Sciences
  • A. Ogienko
    Institute of Molecular and Cellular Biology of the Siberian Branch of the RAS
  • M. Morozova
    Institute of Molecular and Cellular Biology of the Siberian Branch of the RAS, State Scientific-Research Institute of Physiology and Basic Medicine, Russian Academy of Sciences
  • M. Berkaeva
    Institute of Molecular and Cellular Biology of the Siberian Branch of the RAS
  • E. Kiseleva
    Institute of Cytology and Genetics, Siberian Branch of the Russian Academy of Sciences
  • E. Kozhevnikova
    Institute of Molecular and Cellular Biology of the Siberian Branch of the RAS, State Scientific-Research Institute of Physiology and Basic Medicine, Russian Academy of Sciences
Название журнала
  • Scientific Reports
Том
  • 10
Выпуск
  • 1
Финансирующая организация
  • Russian Foundation for Basic Research
Номер гранта
  • 0324-2019-0042
Тип документа
  • journal article
Тип лицензии Creative Commons
  • CC BY
Правовой статус документа
  • Свободная лицензия
Источник
  • scopus