PRPS1-mediated purine biosynthesis is critical for pluripotent stem cell survival and stemness

PRPS1 介导的嘌呤生物合成对于多能干细胞的存活和干细胞特性至关重要

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作者:Yi Yang, Lili Song, Xia Huang, Yanan Feng, Yingwen Zhang, Yanfeng Liu, Shanshan Li, Zhiyan Zhan, Liang Zheng, Haizhong Feng, Yanxin Li

Abstract

Pluripotent stem cells (PSCs) have a unique energetic and biosynthetic metabolism compared with typically differentiated cells. However, the metabolism profiling of PSCs and its underlying mechanism are still unclear. Here, we report PSCs metabolism profiling and identify the purine synthesis enzymes, phosphoribosyl pyrophosphate synthetase 1/2 (PRPS1/2), are critical for PSCs stemness and survival. Ultra-high performance liquid chromatography/mass spectroscopy (UHPLC-MS) analysis revealed that purine synthesis intermediate metabolite levels in PSCs are higher than that in somatic cells. Ectopic expression of PRPS1/2 did not improve purine biosynthesis, drug resistance, or stemness in PSCs. However, knockout of PRPS1 caused PSCs DNA damage and apoptosis. Depletion of PRPS2 attenuated PSCs stemness and assisted PSCs differentiation. Our finding demonstrates that PRPS1/2-mediated purine biosynthesis is critical for pluripotent stem cell stemness and survival.

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