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Inhibition of Syk promotes chemical reprogramming of fibroblasts via metabolic rewiring and H2S production
Authors:Weiyun Wang  Shaofang Ren  Yunkun Lu  Xi Chen  Juanjuan Qu  Xiaojie Ma  Qian Deng  Zhensheng Hu  Yan Jin  Ziyu Zhou  Wenyan Ge  Yibing Zhu  Nannan Yang  Qin Li  Jiaqi Pu  Guo Chen  Cunqi Ye  Hao Wang  Xiaoyang Zhao  Zhiqiang Liu  Saiyong Zhu
Abstract:Chemical compounds have recently been introduced as alternative and non‐integrating inducers of pluripotent stem cell fate. However, chemical reprogramming is hampered by low efficiency and the molecular mechanisms remain poorly characterized. Here, we show that inhibition of spleen tyrosine kinase (Syk) by R406 significantly promotes mouse chemical reprogramming. Mechanistically, R406 alleviates Syk / calcineurin (Cn) / nuclear factor of activated T cells (NFAT) signaling‐mediated suppression of glycine, serine, and threonine metabolic genes and dependent metabolites. Syk inhibition upregulates glycine level and downstream transsulfuration cysteine biosynthesis, promoting cysteine metabolism and cellular hydrogen sulfide (H2S) production. This metabolic rewiring decreased oxidative phosphorylation and ROS levels, enhancing chemical reprogramming. In sum, our study identifies Syk‐Cn‐NFAT signaling axis as a new barrier of chemical reprogramming and suggests metabolic rewiring and redox homeostasis as important opportunities for controlling cell fates.
Keywords:chemical reprogramming   hydrogen sulfide   R406   Syk   metabolism
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