Glucose modulates transcription factor dimerization to enable tissue differentiation

V. Lopez-Pajares, A. Bhaduri, Yang Zhao, G. Gowrishankar, L. Donohue, M. Guo, Z. Siprashvili, Weili Miao, Duy T. Nguyen, A. Li, Ronald L Shanderson, R. Meyers, Angela Guerrero, A. Ji, Omar S. Garcia, Shiying Tao, Lindsey M. Meservey, Xue Yang, S. Gambhir, Jiangbin Ye, P. Khavari
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引用次数: 1

Abstract

Glucose is a universal energy currency for living organisms, however, its non-energetic functions in processes such as differentiation are undefined. In epidermis, differentiating cells exhibit dynamic changes in gene expression1–4 driven by specific transcription factors (TFs)5–9. The interplay between such TFs and biomolecules that also change in this process is not understood. Metabolomic analyses revealed that increased intracellular glucose accompanies differentiation of epidermal keratinocytes. This elevation also occurred in differentiating cells from other tissues and was verified in epidermal tissue engineered with glucose sensors, which detected a glucose gradient that peaked in the outermost differentiated layers. Free glucose accumulation, unaccompanied by its increased metabolism, was essential for epidermal differentiation and required GLUT1, GLUT3, and SGLT1 transporters. Glucose affinity chromatography and azido-glucose click chemistry uncovered glucose binding to diverse regulatory proteins, including the IRF6 TF, whose epidermal knockout confirmed its requirement in glucose-dependent differentiation. Direct glucose binding enabled IRF6 dimerization, DNA binding, genomic localization, and induction of IRF6 target genes, including essential pro-differentiation TFs GRHL1, GRHL3, HOPX and PRDM1. The IRF6R84C mutant found in undifferentiated cancers was unable to bind glucose. These data identify a new role for glucose as a gradient morphogen that modulates protein multimerization in cellular differentiation.
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葡萄糖调节转录因子二聚化,使组织分化
葡萄糖是生物体的通用能量货币,然而,其在分化等过程中的非能量功能尚不明确。在表皮中,分化细胞在特定转录因子(tf) 5-9的驱动下表现出基因表达的动态变化1 - 4。这些tf和在这个过程中发生变化的生物分子之间的相互作用尚不清楚。代谢组学分析显示,细胞内葡萄糖的增加伴随着表皮角质形成细胞的分化。这种升高也发生在与其他组织的分化细胞中,并在葡萄糖传感器工程的表皮组织中得到证实,该组织检测到葡萄糖梯度在最外层分化层达到峰值。游离葡萄糖的积累,不伴随其代谢的增加,是表皮分化所必需的,需要GLUT1, GLUT3和SGLT1转运蛋白。葡萄糖亲和层析和叠氮-葡萄糖点击化学揭示了葡萄糖与多种调节蛋白的结合,包括IRF6 TF,其表皮敲除证实了其在葡萄糖依赖性分化中的必要性。直接葡萄糖结合使IRF6二聚化、DNA结合、基因组定位和诱导IRF6靶基因,包括必需的促分化tf GRHL1、GRHL3、HOPX和PRDM1。在未分化的癌症中发现的IRF6R84C突变体不能结合葡萄糖。这些数据确定了葡萄糖作为一种梯度形态因子在细胞分化中调节蛋白质多聚的新作用。
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