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首页> 外文期刊>ACS Central Science >Genetically Encoded Green Fluorescent Biosensors for Monitoring UDP-GlcNAc in Live Cells
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Genetically Encoded Green Fluorescent Biosensors for Monitoring UDP-GlcNAc in Live Cells

机译:遗传编码的绿色荧光生物传感器,用于监测活细胞中的UDP-GLCNAC

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摘要

Uridine diphosphate N-acetylglucosamine (UDP-GlcNAc) is a nucleotide sugar used by glycosyltransferases to synthesize glycoproteins, glycosaminoglycans, glycolipids, and glycoRNA. UDP-GlcNAc also serves as the donor substrate for forming O-GlcNAc, a dynamic intracellular protein modification involved in diverse signaling and disease processes. UDP-GlcNAc is thus a central metabolite connecting nutrition, metabolism, signaling, and disease. There is a great interest in monitoring UDP-GlcNAc in biological systems. Here, we present the first genetically encoded, green fluorescent UDP-GlcNAc sensor (UGAcS), an optimized insertion of a circularly permuted green fluorescent protein (cpGFP) into an inactive mutant of an Escherichia coli UDP-GlcNAc transferase, for ratiometric monitoring of UDP-GlcNAc dynamics in live mammalian cells. Although UGAcS responds to UDP-GlcNAc quite selectively among various nucleotide sugars, UDP and uridine triphosphate (UTP) interfere with the response. We thus developed another biosensor named UXPS, which is responsive to UDP and UTP but not UDP-GlcNAc. We demonstrated the use of the biosensors to follow UDP-GlcNAc levels in cultured mammalian cells perturbed with nutritional changes, pharmacological inhibition, and knockdown or overexpression of key enzymes in the UDP-GlcNAc synthesis pathway. We further utilized the biosensors to monitor UDP-GlcNAc concentrations in pancreatic MIN6 β-cells under various culture conditions.
机译:尿苷二磷酸N-乙酰葡糖胺(UDP-GLCNAC)是由糖基转移酶使用的核苷酸糖,以合成糖蛋白,糖胺聚糖,糖脂和甘草糖蛋白和甘草糖。 UDP-GLCNAC还用作形成O-GLCNAc的供体基材,该涉及不同信号传导和疾病过程的动态细胞内蛋白质改性。因此,UDP-GLCNAC是一种连接营养,代谢,信号传导和疾病的中央代谢物。对生物系统中的UDP-GLCNAC进行了极大的兴趣。在这里,我们介绍了第一遗传编码的绿色荧光UDP-GlcNAC传感器(UGAC),将圆形允许的绿色荧光蛋白(CpGFP)的优化插入到大肠杆菌UDP-GLCNAc转移酶的无活性突变体中,用于对UDP的比例监测-GLCNAC在活哺乳动物细胞中的动态。尽管UGACs在各种核苷酸糖中选择性地响应UDP-Glcnac,但UDP和尿苷三磷酸(UTP)干扰响应。因此,我们开发了另一个名为UXP的生物传感器,这对UDP和UTP响应但不是UDP-GLCNAC。我们证明了生物传感器在UDP-GlcNAc合成途径中扰乱了培养的哺乳动物细胞中的UDP-GlcNAc水平,在营养变化,药理抑制和敲击或过表达或过表达的UDP-GlcNAC合成途径。我们进一步利用了生物传感器在各种培养条件下监测胰腺MIN6β-细胞中的UDP-GLCNAC浓度。

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