Sawaguchi S, Yue B Y, Kawa J E, Chang I L, Twining S S, Meberg B
Department of Ophthalmology and Visual Sciences, College of Medicine, University of Illinois at Chicago 60612.
Invest Ophthalmol Vis Sci. 1994 Jan;35(1):251-61.
To examine in the human trabecular meshwork lysosomal enzymes and one inhibitor of serine proteases that actively participate in the degradation of macromolecules into low molecular weight constituents.
Using an avidin-biotin-peroxidase technique, lysosomal proteases and alpha 1-proteinase inhibitor were examined in the trabecular meshwork of 23 human eyes with donor ages ranging from 2 to 90 years. These eyes were categorized into three age groups (< or = 20, 21 to 49, and > or = 50 years). Histochemical staining for lysosomal hydrolases was also performed on frozen sections of 20 human eyes. The staining was analyzed by an image analyzer and the levels of lysosomal proteases were further measured by biochemical assays.
The trabecular meshwork from all the eyes stained intensely against antibodies to cathepsins B and G and alpha 1-proteinase inhibitor. The staining for elastase was weaker but evident. Image analyses revealed that the staining intensity for each protease or inhibitor was similar in all age groups. The staining in the uveal meshwork appeared to be the strongest among all the trabecular meshwork regions. Biochemical assays of tissue extracts confirmed that the enzyme and inhibitor levels were comparable among the three donor age groups. Activities of two lysosomal hydrolases, acid phosphatase and acid esterase, were also found in trabecular meshwork cells of 20 eyes. No apparent difference in enzyme activities was found with increasing age, and variation related to region was not observed.
This study demonstrated the age-independent distribution of a variety of lysosomal enzymes and a protease inhibitor in the human trabecular meshwork. The presence of these proteins suggests a possible role in the metabolic operation of the trabecular meshwork.
研究人小梁网中溶酶体酶和一种丝氨酸蛋白酶抑制剂,它们积极参与将大分子降解为低分子量成分的过程。
采用抗生物素蛋白-生物素-过氧化物酶技术,对23只供体年龄在2至90岁之间的人眼小梁网中的溶酶体蛋白酶和α1-蛋白酶抑制剂进行检测。这些眼睛被分为三个年龄组(≤20岁、21至49岁、≥50岁)。还对20只人眼的冰冻切片进行了溶酶体水解酶的组织化学染色。通过图像分析仪对染色进行分析,并通过生化测定进一步测量溶酶体蛋白酶的水平。
所有眼睛的小梁网对组织蛋白酶B和G以及α1-蛋白酶抑制剂的抗体染色均强烈。弹性蛋白酶的染色较弱但明显。图像分析显示,所有年龄组中每种蛋白酶或抑制剂的染色强度相似。在所有小梁网区域中,葡萄膜小梁网的染色似乎最强。组织提取物的生化测定证实,三个供体年龄组之间的酶和抑制剂水平相当。在20只眼睛的小梁网细胞中还发现了两种溶酶体水解酶,酸性磷酸酶和酸性酯酶的活性。随着年龄增长,未发现酶活性有明显差异,也未观察到与区域相关的变化。
本研究证明了多种溶酶体酶和一种蛋白酶抑制剂在人小梁网中的年龄无关分布。这些蛋白质的存在表明它们可能在小梁网的代谢运作中发挥作用。