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溶酶体水解酶潜伏状态的结构等效物。

Structural equivalents of latency for lysosome hydrolases.

作者信息

Baccino F M, Zuretti M F

出版信息

Biochem J. 1975 Jan;146(1):97-108. doi: 10.1042/bj1460097.

Abstract
  1. Structure-linked latency, a trait for most lysosome hydrolase activities, is customarily ascribed to the permeability-barrier function performed by the particle-limiting membrane, which shields enzyme sites from externally added substrates. 2. The influence of various substrate concentrations on the reaction rate has been measured for both free (non-latent) and total (completely unmasked by Triton X-100) hydrolase activities in rat liver cell-free preparations. The substrates were: beta-glycerophosphate, phenolphthalein mono-beta-glucuronide. p-nitrophenyl N-acetyl-beta-D-glucosaminide and p-nitrophenyl beta-D-galactopyranoside. The ratio (free activity/total activity) X 100 is called fractional free activity at any given substrate concentration. 3. The fractional free activity of beta-glucuronidase and beta-N-acetylglucosaminidase were clearly independent of substrate concentration, over the range examined, in both homogenates and lysosome-rich fractions. The fractional free activity of acid phosphatase appeared to be either unaffected (homogenate) or even depressed (lysosome-rich fraction) by increasing the beta-glycerophosphate concentration. The fractional free activity of beta-galactosidase consistently showed a non-linear increase with increasing substrate concentration in both homogenates and lysosome-rich fractions. 4. Procedures such as treatment with digitonin, hypo-osmotic shock and acid autolysis, although effective in causing varying degrees of resolution of the latency of lysosome hydrolase activities, were unable to modify appreciably the pattern of dependence or independence of their fractional free activities on substrate concentration, as compared with that exhibited by control preparations. Ouabain did not affect the free beta-N-acetylglucosaminidase activity of liver homogenates at all. 5. Preincubation of control preparations with beta-glycerophosphate or p-nitrophenyl beta-galactoside did not result in any significant stimulation of the free hydrolytic activity toward these substrates. 6. The results consistently support the view that the membrane of "intact" lysosomes is virtually impermeable to all the substrates tested, except for p-nitrophenyl beta-galactoside, for which the evidence is contradictory. Moreover the progressive unmasking of the hydrolase activities produced by these procedures in vitro reflects the increasing proportion of enzyme sites that are fully accessible to their substrates rather than a graded increase in the permeability of the lysosomal membrane.
摘要
  1. 结构关联延迟是大多数溶酶体水解酶活性的一个特征,通常归因于颗粒限制膜所发挥的通透屏障功能,该膜可使酶位点免受外部添加底物的影响。2. 已在大鼠肝细胞游离制剂中测定了不同底物浓度对游离(无潜伏性)和总(被 Triton X - 100 完全去掩蔽)水解酶活性反应速率的影响。底物有:β - 甘油磷酸、酚酞单 - β - 葡萄糖醛酸苷、对硝基苯基 N - 乙酰 - β - D - 氨基葡萄糖苷和对硝基苯基 β - D - 吡喃半乳糖苷。在任何给定底物浓度下,(游离活性/总活性)×100 的比值称为游离活性分数。3. 在匀浆和富含溶酶体的组分中,在所研究的浓度范围内,β - 葡萄糖醛酸酶和β - N - 乙酰氨基葡萄糖苷酶的游离活性分数明显与底物浓度无关。酸性磷酸酶的游离活性分数在匀浆中似乎不受影响,而在富含溶酶体的组分中,随着β - 甘油磷酸浓度的增加甚至降低。在匀浆和富含溶酶体的组分中,β - 半乳糖苷酶的游离活性分数均随着底物浓度的增加持续呈现非线性增加。4. 诸如用洋地黄皂苷处理、低渗休克和酸自溶等方法,尽管能有效引起溶酶体水解酶活性潜伏性不同程度的解除,但与对照制剂相比,它们不能明显改变其游离活性分数对底物浓度的依赖或不依赖模式。哇巴因对肝匀浆中游离的β - N - 乙酰氨基葡萄糖苷酶活性完全没有影响。5. 对照制剂用β - 甘油磷酸或对硝基苯基β - 半乳糖苷预孵育,并未导致对这些底物的游离水解活性有任何显著刺激。6. 这些结果始终支持这样一种观点,即“完整”溶酶体的膜实际上对所有测试底物均不可渗透,但对硝基苯基β - 半乳糖苷除外,关于其证据存在矛盾。此外,这些体外方法所产生的水解酶活性的逐步去掩蔽反映了酶位点可完全被其底物接近的比例增加,而非溶酶体膜通透性的分级增加。

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