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Transglycosidase activity of chitotriosidase - Improved enzymatic assay for the human macrophage chitinase

机译:壳三糖苷酶的转糖苷酶活性-改进的人类巨噬细胞几丁质酶的酶法测定

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摘要

Chitotriosidase is a chitinase that is massively expressed by lipid-laden tissue macrophages in man. Its enzymatic activity is markedly elevated in serum of patients suffering from lysosomal lipid storage disorders, sarcoidosis, thalassemia, and visceral Leishmaniasis. Monitoring of serum chitotriosidase activity in Gaucher disease patients during progression and therapeutic correction of their disease is useful to obtain insight in changes in body burden on pathological macrophages. However, accurate quantification of chitotriosidase levels by enzyme assay is complicated by apparent substrate inhibition, which prohibits the use of saturating substrate concentrations. We have therefore studied the catalytic features of chitotriosidase in more detail. It is demonstrated that the inhibition of enzyme activity at excess substrate concentration can be fully explained by transglycosylation of substrate molecules. The potential physiological consequences of the ability of chitotriosidase to hydrolyze as well as transglycosylate are discussed. The novel insight in transglycosidase activity of chitotriosidase has led to the design of a new substrate molecule, 4-methylumbelliferyl-(4-deoxy) chitobiose. With this substrate, which is no acceptor for transglycosylation, chitotriosidase shows normal Michaelis-Menten kinetics, resulting in major improvements in sensitivity and reproducibility of enzymatic activity measurements. The novel convenient chitotriosidase enzyme assay should facilitate the accurate monitoring of Gaucher disease patients receiving costly enzyme replacement therapy
机译:壳三糖苷酶是几丁质酶,其在人类中由脂质负载的组织巨噬细胞大量表达。在患有溶酶体脂质贮积症,结节病,地中海贫血和内脏利什曼病的患者的血清中,其酶活性显着升高。监测高雪氏病患者病情发展过程中的血清壳三糖苷酶活性,并对其疾病进行治疗性纠正,有助于了解病理性巨噬细胞的机体负荷变化。然而,通过酶测定法对壳三糖苷酶水平的准确定量由于明显的底物抑制而变得复杂,这禁止使用饱和底物浓度。因此,我们更详细地研究了壳三糖苷酶的催化特性。已经证明,通过底物分子的转糖基化可以充分解释在过量底物浓度下酶活性的抑制。讨论了壳三糖苷酶水解以及转糖基糖苷能力的潜在生理后果。壳三糖苷酶的转糖苷酶活性的新颖见解导致了新底物分子4-甲基伞形酮-(4-脱氧)壳二糖的设计。使用这种不是转糖基化受体的底物,壳三糖苷酶显示出正常的Michaelis-Menten动力学,从而大大提高了酶活性测量的灵敏度和可重复性。新颖方便的壳三糖苷酶测定法应有助于对接受昂贵酶替代疗法的高雪氏病患者进行准确监测

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