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体外糖胺聚糖 - 溶酶体酶相互作用的物理化学特性。白细胞溶酶体活性控制模型。

Physicochemical characteristics of the glycosaminoglycan-lysosomal enzyme interaction in vitro. A model of control of leucocytic lysosomal activity.

作者信息

Avila J L, Convit J

出版信息

Biochem J. 1976 Nov 15;160(2):129-36. doi: 10.1042/bj1600129.

Abstract
  1. The activities of 30 different lysosomal enzymes were determined in vitro in the presence of the sulphated glycosaminoglycans, heparin and chondroitin sulphate, all the enzymes being measured on a density-gradient-purified lysosomal fraction. 2. Each enzyme was studied as a function of the pH of the incubation medium. In general the presence of sulphated glycosaminoglycans induced a strong pH-dependent inhibition of lysosomal enzymes at pH values lower than 5.0, with full activity at higher pH values. However, in the particular case of lysozyme and phospholipase A2 the heparin-induced inhibition was maintained in the pH range 4.0-7.0. 3. For certain enzymes, such as acid beta-glycerophosphatase, alpha-galactosidase, acid lipase, lysozyme and phospholipase A2, the pH-dependent behaviour obtained in the presence of heparin was quite different to that obtained with chondroitin sulphate, suggesting the existence of physicochemical characteristic factors playing a role in the intermolecular interaction for each of the sulphated glycosaminoglycans studied. 4. Except in the particular case of peroxidase activity, in all other lysosomal enzymes measured the glycosaminoglycan-enzyme complex formation was a temperature-and time-independent phenomenon. 5. The effects of the ionic strength and pH on this intermolecular interaction reinforce the concept of an electrostatic reversible interaction between anionic groups of the glycosaminoglycans and cationic groups on the enzyme molecule. 6. As leucocytic primary lysosomes have a very acid intragranular pH and large amounts of chondroitin sulphate, we propose that this glycosaminoglycan might act as molecular regulator of leucocytic activity, by inhibiting lysosomal enzymes when the intragranular pH is below the pI of lysosomal enzymes. This fact, plus the intravacuolar pH changes described during the phagocytic process, might explain the unresponsiveness of lysosomal enzymes against each other existing in primary lysosomes as well as its full activation at pH values occurring in secondary lysosomes during the phagocytic process.
摘要
  1. 在存在硫酸化糖胺聚糖、肝素和硫酸软骨素的情况下,体外测定了30种不同溶酶体酶的活性,所有酶均在密度梯度纯化的溶酶体组分上进行测定。2. 研究了每种酶作为孵育介质pH值的函数。一般来说,硫酸化糖胺聚糖的存在会在pH值低于5.0时对溶酶体酶产生强烈的pH依赖性抑制,在较高pH值时具有完全活性。然而,在溶菌酶和磷脂酶A2的特殊情况下,肝素诱导的抑制在pH范围4.0 - 7.0内维持。3. 对于某些酶,如酸性β-甘油磷酸酶、α-半乳糖苷酶、酸性脂肪酶、溶菌酶和磷脂酶A2,在肝素存在下获得的pH依赖性行为与硫酸软骨素存在下获得的行为有很大不同,这表明在所研究的每种硫酸化糖胺聚糖的分子间相互作用中存在起作用的物理化学特征因素。4. 除了过氧化物酶活性的特殊情况外,在所有其他测定的溶酶体酶中,糖胺聚糖 - 酶复合物的形成是一种与温度和时间无关的现象。5. 离子强度和pH对这种分子间相互作用的影响强化了糖胺聚糖阴离子基团与酶分子阳离子基团之间静电可逆相互作用的概念。6. 由于白细胞初级溶酶体具有非常酸性的颗粒内pH值和大量的硫酸软骨素,我们提出这种糖胺聚糖可能作为白细胞活性的分子调节剂,当颗粒内pH值低于溶酶体酶的pI时抑制溶酶体酶。这一事实,加上吞噬过程中描述的液泡内pH值变化,可能解释了初级溶酶体中溶酶体酶之间相互无反应性以及其在吞噬过程中次级溶酶体中出现的pH值下的完全激活。

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