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戈谢病携带者患者及 obligate 杂合子白细胞中β-葡萄糖苷酶的生化特性。 (注:“obligate heterozygotes”直译为“ obligate 杂合子”,这里的“obligate”在医学遗传学中有特定含义,可能需要更多背景知识来准确理解其确切所指,比如“必然杂合子”等,具体含义需结合专业领域进一步明确,但按要求不添加解释直接翻译)

Biochemical properties of beta-glucosidase in leukocytes from patients and obligated heterozygotes for Gaucher disease carriers.

作者信息

Michelin Kristiane, Wajner Alessandro, Bock Hugo, Fachel Angela, Rosenberg Roberto, Pires Ricardo Flores, Pereira Maria Luiza Saraiva, Giugliani Roberto, Coelho Janice Carneiro

机构信息

Medical Genetics Service, Hospital de Clínicas de Porto Alegre, RS, Brazil.

出版信息

Clin Chim Acta. 2005 Dec;362(1-2):101-9. doi: 10.1016/j.cccn.2005.06.010. Epub 2005 Jul 22.

Abstract

BACKGROUND

Gaucher's disease (GD) is a disorder caused by the deficiency of lysosomal beta-glucosidase, an enzyme that participates in the degradation of glycosphingolipids. Deficiency of this enzyme results in the storage of glucocerebrosides in lysosomes of macrophage. No studies are available in the literature comparing biochemical and kinetic behavior of this enzyme in leukocytes and fibroblasts from normal individuals, obligate heterozygotes and patients with GD.

METHODS

The behavior of beta-glu in terms of optimum pH, heat stability, Km and Vmax in leukocytes from patients with GD and obligated heterozygotes with different genotypes and normal individuals were characterized.

RESULTS

Optimum pH was similar in all groups analyzed. In terms of Km and Vmax, several differences among heterozygotes and homozygotes groups and among these groups and normal enzyme were observed. Enzyme from all groups were inactivated when preincubated at 60 degrees C, but some enzymes were more stable than other. Results showed a different behavior of the enzyme in the 3 groups under analysis. Such behavior varied according to individual mutation.

CONCLUSIONS

The catalytic gradient presented by beta-glu allowed the correlation of N370S mutation-which presented more stable biochemical properties-with the non-neurological clinical condition of the disease and the catalytically less stable mutation (D409H), with the neurological clinical condition of GD. This study contributes to a better understanding of the repercussion of the different mutations on the protein function, thus allowing to predict the severity of such complex metabolic disorder and to anticipate the most appropriate intervention for each case specifically.

摘要

背景

戈谢病(GD)是一种由溶酶体β-葡萄糖苷酶缺乏引起的疾病,该酶参与糖鞘脂的降解。这种酶的缺乏导致葡萄糖脑苷脂在巨噬细胞的溶酶体中蓄积。文献中尚无关于正常个体、 obligate杂合子和戈谢病患者白细胞和成纤维细胞中该酶生化和动力学行为比较的研究。

方法

对不同基因型的戈谢病患者、 obligate杂合子和正常个体白细胞中β-葡萄糖苷酶在最适pH、热稳定性、 Km和Vmax方面的行为进行了表征。

结果

所有分析组的最适pH相似。在Km和Vmax方面,杂合子和纯合子组之间以及这些组与正常酶之间观察到一些差异。所有组的酶在60℃预孵育时均失活,但有些酶比其他酶更稳定。结果显示所分析的3组中酶的行为不同。这种行为因个体突变而异。

结论

β-葡萄糖苷酶呈现的催化梯度使得具有更稳定生化特性的N370S突变与该疾病的非神经临床状况相关,而催化稳定性较低的突变(D409H)与戈谢病的神经临床状况相关。本研究有助于更好地理解不同突变对蛋白质功能的影响,从而能够预测这种复杂代谢紊乱的严重程度,并针对每个病例具体情况预先采取最合适的干预措施。

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