Absence of TXNIP in Humans Leads to Lactic Acidosis and Low Serum Methionine Linked to Deficient Respiration on Pyruvate

Author:

Katsu-Jiménez Yurika1,Vázquez-Calvo Carmela1,Maffezzini Camilla2,Halldin Maria3,Peng Xiaoxiao1,Freyer Christoph2,Wredenberg Anna2,Giménez-Cassina Alfredo14,Wedell Anna56,Arnér Elias S.J.1ORCID

Affiliation:

1. Division of Biochemistry, Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden

2. Division of Molecular Metabolism, Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden

3. Department of Women’s and Children’s Health, Akademiska University Hospital, Uppsala, Sweden

4. Department of Molecular Biology, Centro de Biología Molecular “Severo Ochoa,” Universidad Autónoma de Madrid, Madrid, Spain

5. Department of Molecular Medicine and Surgery, Science for Life Laboratory, Karolinska Institutet, Stockholm, Sweden

6. Centre for Inherited Metabolic Diseases, Karolinska University Hospital, Stockholm, Sweden

Abstract

Thioredoxin-interacting protein (TXNIP) is an α-arrestin that can bind to and inhibit the antioxidant protein thioredoxin (TXN). TXNIP expression is induced by glucose and promotes β-cell apoptosis in the pancreas, and deletion of its gene in mouse models protects against diabetes. TXNIP is currently studied as a potential new target for antidiabetic drug therapy. In this study, we describe a family with a mutation in the TXNIP gene leading to nondetectable expression of TXNIP protein. Symptoms of affected family members include lactic acidosis and low serum methionine levels. Using patient-derived TXNIP-deficient fibroblasts and myoblasts, we show that oxidative phosphorylation is impaired in these cells when given glucose and pyruvate but normalized with malate. Isolated mitochondria from these cells appear to have normal respiratory function. The cells also display a transcriptional pattern suggestive of a high basal activation of the Nrf2 transcription factor. We conclude that a complete lack of TXNIP in human is nonlethal and leads to specific metabolic distortions that are, at least in part, linked to a deficient respiration on pyruvate. The results give important insights into the impact of TXNIP in humans and thus help to further advance the development of antidiabetic drugs targeting this protein.

Funder

Karolinska Institutet

The Swedish Research Council

Swedish Cancer Society

Knut and Alice Wallenberg Foundation

Stockholm County Council

Ministerio of Economía y Competitividad

Diabetesfonden

Alicia Koplowitz Foundation

Ragnar Söderberg

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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