Metabolic rewiring in keratinocytes by miR‐31‐5p identifies therapeutic intervention for psoriasis

Author:

Wang Mao‐Jie1234ORCID,Huang Huan‐Jie12ORCID,Xu Yong‐Yue1,Vos Harmjan2ORCID,Gulersonmez Can2,Stigter Edwin2ORCID,Gerritsen Johan5,Gallego Marc Pages6ORCID,van Es Robert2ORCID,Li Li1,Deng Hao1ORCID,Han Lin1,Huang Run‐Yue134ORCID,Lu Chuan‐Jian134ORCID,Burgering Boudewijn MT2ORCID

Affiliation:

1. The Second Affiliated Hospital Guangzhou University of Chinese Medicine (Guangdong Provincial Hospital of Chinese Medicine) Guangzhou China

2. Oncode Institute and Molecular Cancer Research, Center for Molecular Medicine University Medical Center Utrecht Utrecht The Netherlands

3. Guangdong Provincial Key Laboratory of Clinical Research on Traditional Chinese Medicine Syndrome Guangzhou China

4. Guangdong‐Hong Kong‐Macau Joint Lab on Chinese Medicine and Immune Disease Research Guangzhou University of Chinese Medicine Guangzhou China

5. Metabolic Diagnostics, Department of Biomedical Genetics, Centre for Molecular Medicine University Medical Centre Utrecht Utrecht The Netherlands

6. Oncode Institute and Department of Genetics, Center for Molecular Medicine University Medical Center Utrecht Utrecht The Netherlands

Abstract

AbstractBesides genetic alterations, the cellular environment also determines disease onset and progression. When different cell types contribute to disease outcome, this imposes environmental challenges as different cell types likely differ in their extracellular dependencies. Hsa‐microRNA‐31‐5p (miR‐31) is highly expressed in keratinocytes of psoriatic skin, and we show that expression in keratinocytes is induced by limited glucose availability and enables increased survival under limiting glucose conditions by increasing glutamine metabolism. In addition, miR‐31 expression results in not only secretion of specific metabolites (aspartate and glutamate) but also secretion of immunomodulatory factors. We show that this miR‐31‐induced secretory phenotype is sufficient to induce Th17 cell differentiation, a hallmark of psoriasis. Inhibitors of miR31‐induced metabolic rewiring and metabolic crosstalk with immune cells alleviate psoriasis pathology in a mouse model of psoriasis. Together our data illustrate an emerging concept of metabolic interaction across cell compartments that characterizes disease development, which can be employed to design effective treatment options for disease, as shown here for psoriasis.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Molecular Medicine

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