Suppr超能文献

纯化的哺乳动物金属蛋白酶对肾小球基底膜的降解作用。

Degradation of glomerular basement membrane by purified mammalian metalloproteinases.

作者信息

Baricos W H, Murphy G, Zhou Y W, Nguyen H H, Shah S V

机构信息

Department of Biochemistry, Tulane Medical School, New Orleans, LA 70112.

出版信息

Biochem J. 1988 Sep 1;254(2):609-12. doi: 10.1042/bj2540609.

Abstract

Neutral metalloproteinases degrade components of the extracellular matrix, including collagen types I-V, fibronectin, laminin and proteoglycan. However, their ability to degrade intact glomerular basement membrane (GBM) has not previously been investigated. Incubation of [3H]GBM (50,000 c.p.m.; pH 7.5; 24 h at 37 degrees C) with purified gelatinase or stromelysin (2 units) resulted in significant GBM degradation: gelatinase, 46 +/- 2.2; stromelysin, 59 +/- 5.8 (means +/- S.E.M.; percentage release of non-sedimentable radioactivity; n = 4). In contrast, 2 units of collagenase released only 5.6 +/- 0.52% (n = 3) of the [3H]GBM radioactivity compared with 2.0 +/- 0.15% (n = 7) released from [3H]GBM incubated alone. Sephadex G-200 gel chromatography of supernatants obtained from incubations of [3H]GBM with either gelatinase or stromelysin confirmed the ability of these enzymes to degrade GBM and revealed both high-(800,000) and relatively low-(less than 20,000) Mr degradation products for both enzymes. GBM degradation by gelatinase and stromelysin was dose-dependent (range 0.02-2.0 units), near maximal between pH 6.0 and 8.6, and was completely inhibited (greater than 95%) by 2 mM-o-phenanthroline. Collagenase (2 units) did not enhance the degradation of GBM by either gelatinase (0.02 or 0.2 unit) or stromelysin (0.02 or 0.2 unit). Our results indicate that metalloproteinase-mediated GBM degradation by neutrophils and glomeruli may be attributable to gelatinase (neutrophils) and/or stromelysin (glomeruli) and suggest an important role for these proteinases in glomerular pathophysiology.

摘要

中性金属蛋白酶可降解细胞外基质的成分,包括Ⅰ至Ⅴ型胶原蛋白、纤连蛋白、层粘连蛋白和蛋白聚糖。然而,它们降解完整肾小球基底膜(GBM)的能力此前尚未得到研究。将[³H]GBM(50,000 计数每分钟;pH 7.5;37℃孵育24小时)与纯化的明胶酶或基质溶解素(2单位)一起孵育,导致GBM显著降解:明胶酶,46±2.2;基质溶解素,59±5.8(均值±标准误;不可沉淀放射性的释放百分比;n = 4)。相比之下,2单位胶原酶仅释放了[³H]GBM放射性的5.6±0.52%(n = 3),而单独孵育的[³H]GBM释放率为2.0±0.15%(n = 7)。对[³H]GBM与明胶酶或基质溶解素孵育所得上清液进行葡聚糖G - 200凝胶过滤,证实了这些酶降解GBM的能力,并揭示两种酶都产生了高分子量(800,000)和相对低分子量(小于20,000)的降解产物。明胶酶和基质溶解素对GBM的降解呈剂量依赖性(范围0.02 - 2.0单位),在pH 6.0至8.6之间接近最大值,并且被2 mM邻菲罗啉完全抑制(大于95%)。胶原酶(2单位)不会增强明胶酶(0.02或0.2单位)或基质溶解素(0.02或0.2单位)对GBM的降解。我们的结果表明,中性粒细胞和肾小球中金属蛋白酶介导的GBM降解可能归因于明胶酶(中性粒细胞)和/或基质溶解素(肾小球),并提示这些蛋白酶在肾小球病理生理学中起重要作用。

相似文献

2
Gelatinase contributes to the degradation of glomerular basement membrane collagen by human neutrophils.
Coll Relat Res. 1988 Mar;8(2):113-22. doi: 10.1016/s0174-173x(88)80023-2.

引用本文的文献

2
Albumin modulates the production of matrix metalloproteinases-2 and -9 in podocytes.
J Huazhong Univ Sci Technolog Med Sci. 2009 Dec;29(6):710-4. doi: 10.1007/s11596-009-0607-1. Epub 2009 Dec 29.

本文引用的文献

6
Mammalian collagenases.
Methods Enzymol. 1981;80 Pt C:711-22. doi: 10.1016/s0076-6879(81)80054-7.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验