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葡萄糖-6-磷酸酶与1型糖原贮积病:一些关键考量因素

Glucose-6-phosphatase and type 1 glycogen storage disease: some critical considerations.

作者信息

Arion W J, Canfield W K

机构信息

Division of Nutritional Sciences, Cornell University, Ithaca, New York 14853.

出版信息

Eur J Pediatr. 1993;152 Suppl 1:S7-13. doi: 10.1007/BF02072080.

Abstract

There now is compelling evidence that hydrolysis of glucose-6-phosphate (Glc-6-P) in intact hepatic endoplasmic reticulum (ER) membrane preparations involves four integral components of the membrane: a Glc-6-P specific transporter (T1), a nonspecific enzyme (E) with its active site facing the lumen, and two other transport systems to mediate rapid and reversible fluxes of the hydrolytic products, inorganic phosphate (Pi) and glucose, i.e. (T2) and (T3), respectively. T2 also mediates transport of inorganic pyrophosphate (PPi) and carbamylphosphate. This concept readily and completely reconciles all known characteristics of the glucose-6-phosphatase (Glc-6-P'ase) system provided appropriate considerations are given to: (1) the quantitative contribution of E residing in membranes lacking a permeability barrier; (2) the kinetic restrictions imposed by T1 and T2; and (3) the influences of the endocrine, developmental and nutritional state on the kinetic relationship between the capacities to transport and hydrolyze. A broader-based understanding and application of these principles in the study of Glc-6-P'ase is needed to ensure accurate diagnosis of type 1 glycogen storage disease (GSD) and minimize unnecessary controversy. The view that the enzyme in native ER membranes is conformationally constrained is not supported by direct measurements of the catalytic turnover number. Finally, we describe the marked deficiencies of rapid filtration assays of Glc-6-P and PPi "uptake" as a direct method of diagnosis of types 1b and 1c GSD.

摘要

目前有确凿证据表明,完整肝内质网(ER)膜制剂中葡萄糖-6-磷酸(Glc-6-P)的水解涉及膜的四个完整组分:一种Glc-6-P特异性转运蛋白(T1)、一种活性位点面向内腔的非特异性酶(E),以及另外两个分别介导水解产物无机磷酸(Pi)和葡萄糖快速可逆通量的转运系统,即(T2)和(T3)。T2还介导无机焦磷酸(PPi)和氨甲酰磷酸的转运。只要适当考虑以下几点,这个概念就能轻松且完全地解释葡萄糖-6-磷酸酶(Glc-6-P'ase)系统的所有已知特征:(1)存在于无通透性屏障膜中的E的定量贡献;(2)T1和T2施加的动力学限制;(3)内分泌、发育和营养状态对转运和水解能力之间动力学关系的影响。在Glc-6-P'ase研究中需要更广泛地理解和应用这些原则,以确保准确诊断1型糖原贮积病(GSD)并尽量减少不必要的争议。天然ER膜中的酶构象受限制这一观点未得到催化周转数直接测量结果的支持。最后,我们描述了将Glc-6-P和PPi“摄取”的快速过滤测定作为诊断1b型和1c型GSD直接方法的明显缺陷。

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