Suppr超能文献

一种用于定量活细胞中底物水平和葡糖脑苷脂酶(GCase)活性的双功能底物。

A dual-functional substrate for quantitation of substrate levels and GCase activity in living cells.

作者信息

Tiet Ben, Zhu Sha, Chen Xi, Anastasi Nadia, See Nicholas W, Deen Matthew C, Harde Eva, Vocadlo David J

机构信息

Department of Chemistry, Simon Fraser University Burnaby BC V5A 1S6 Canada

Roche Pharma Research and Early Development, Neuroscience and Rare Diseases Discovery and Translational Area, Roche Innovation Center Basel F. Hoffmann-La Roche Ltd Basel Switzerland.

出版信息

RSC Chem Biol. 2025 Jul 3. doi: 10.1039/d5cb00045a.

Abstract

Loss of function mutations in the gene , which encodes the lysosomal glycoside hydrolase β-glucocerebrosidase (GCase) cause Gaucher's disease (GD). Moreover, one mutant allele of is the most common genetic risk factor for the development of Parkinson's disease (PD). To gain a better understanding how these mutations drive development of PD and how GCase is regulated within cells, the field needs chemical reporters of GCase activity that can be used within living cells. Fluorogenic substrates are one method that can be used to quantify enzyme activities within cells yet existing substrates for GCase have limitations. In particular, the inability to monitor cellular uptake of substrate limits the ability to disentangle impairments in uptake of substrate from impairments in lysosomal GCase activity. Here we report on the preparation and biological characterisation of LysoRF-GBA - a new chemical tool which can be used to quantitatively measure both the cellular levels of intact substrate and lysosomal GCase activity within lysosomes. We demonstrate that, by using LysoRF-GBA, endogenous GCase activity can be measured within live neuroblastoma cells. The selectivity of this substrate for GCase, relative to other cellular enzymes, was validated by genetic and pharmacological perturbation of GCase. By using LysoRF-GBA and concomitantly monitoring levels of both cleaved product and intact substrate, we were able to measure GCase engagement with a known pharmacological chaperone and discriminate between pharmacological agents that affect GCase activity from those that impair endocytosis. Further, the ability to monitor intracellular levels of intact LysoRF-GBA also enabled us to measure its time dependent accumulation within cells, providing insight into when steady state levels of this substrate are reached. LysoRF-GBA therefore shows high potential to be exploited as a tool for the discovery of compounds that could beneficially modulate its activity for benefit in diseases including PD.

摘要

编码溶酶体糖苷水解酶β-葡萄糖脑苷脂酶(GCase)的基因功能缺失突变会导致戈谢病(GD)。此外,该基因的一个突变等位基因是帕金森病(PD)发生的最常见遗传风险因素。为了更好地理解这些突变如何推动PD的发展以及GCase在细胞内是如何被调节的,该领域需要能够在活细胞中使用的GCase活性化学报告分子。荧光底物是一种可用于定量细胞内酶活性的方法,但现有的GCase底物存在局限性。特别是,无法监测底物的细胞摄取限制了区分底物摄取受损与溶酶体GCase活性受损的能力。在此,我们报告了LysoRF-GBA的制备和生物学特性——一种可用于定量测量完整底物的细胞水平和溶酶体内溶酶体GCase活性的新型化学工具。我们证明,通过使用LysoRF-GBA,可以在活的神经母细胞瘤细胞中测量内源性GCase活性。通过对GCase进行基因和药理学干扰,验证了该底物相对于其他细胞酶对GCase的选择性。通过使用LysoRF-GBA并同时监测裂解产物和完整底物的水平,我们能够测量GCase与一种已知的药理学伴侣的结合,并区分影响GCase活性的药物制剂和损害内吞作用的药物制剂。此外,监测完整LysoRF-GBA细胞内水平的能力还使我们能够测量其在细胞内的时间依赖性积累,从而深入了解该底物何时达到稳态水平。因此,LysoRF-GBA作为一种工具,在发现能够有益地调节其活性以治疗包括PD在内的疾病的化合物方面具有很高的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a198/12309249/d4adc538cf02/d5cb00045a-f1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验