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肝素及其衍生物调节丝氨酸蛋白酶(SERPS)与丝氨酸蛋白酶抑制剂(SERPINS)之间的平衡。生理病理学意义。

Heparin and its derivatives modulate serine proteinases (SERPS) serine proteinase inhibitors (SERPINS) balance. Physiopathological relevance.

作者信息

Hornebeck W, Lafuma C, Robert L, Móczár M, Móczár E

机构信息

Laboratoire de Biologie du Tissu Conjonctif, URA CNRS 1460, Faculté de Médecine, Université Paris XII, Créteil, France.

出版信息

Pathol Res Pract. 1994 Oct;190(9-10):895-902. doi: 10.1016/S0344-0338(11)80993-3.

Abstract

Heparin and heparan sulfate, exhibiting wide biological interactions, are constituted of block structures. A defined pentasaccharide motif was found responsible for the enhancement of the rate of inactivation of factor Xa by antithrombin III. Heparin also interacts with other serine proteinase inhibitors as protease nexin I, and thus possibly modulates extracellular matrix proteolysis by serine proteinases in the pericellular environment. Human neutrophil elastase (HNE) activity is inhibited by heparin with Ki = 75 pM. This strong interaction is electrostatic, involving HNE/arginine residues disposed in a "cluster shoe" arrangement on the surface of the molecule and mainly OSO3- groups of heparin. HNE-heparin interactions also interfere with HNE associations with its natural inhibitors: it decreases the rate of association of HNE with alpha 1 proteinase inhibitor (alpha 1 P(i)) by 3 orders of magnitude, while increasing kass between HNE and mucus bronchial inhibitor (MBI) by > 10 fold. In vivo experiments demonstrated that heparin fragments lacking anticoagulant activity were able to nearly completely abolish emphysematous lesions induced in mice by a single intratracheal administration of 200 micrograms HNE. Long chain unsaturated fatty acids peptide conjugates were described as competitive HNE inhibitors (Hornebeck W. et al. 1985). We synthesized N-oleoyl heparin derivative (3 oleoyl groups/one molecule of heparin); such a lipophilic glycosaminoglycan (LipoGAG), although acting as an elastin protecting agent, possessed lower HNE inhibitory capacity as compared with heparin. In contrast, however, it was able to inhibit other serine proteinases such as urokinase, plasmin, porcine pancreatic apha-chymotrypsin and elastase. Such Lipo GAG's can be therefore useful to control matrix metalloproteinases (MMPs) during tissue remodeling or tumor invasion.

摘要

肝素和硫酸乙酰肝素具有广泛的生物相互作用,由嵌段结构组成。已发现一种特定的五糖基序可提高抗凝血酶III对Xa因子的灭活速率。肝素还与其他丝氨酸蛋白酶抑制剂如蛋白酶连接蛋白I相互作用,因此可能在细胞周围环境中调节丝氨酸蛋白酶对细胞外基质的蛋白水解作用。肝素对人中性粒细胞弹性蛋白酶(HNE)活性具有抑制作用,其抑制常数Ki = 75 pM。这种强相互作用是静电作用,涉及分子表面以“簇状鞋”排列的HNE/精氨酸残基以及肝素的主要OSO3-基团。HNE-肝素相互作用也会干扰HNE与其天然抑制剂的结合:它使HNE与α1蛋白酶抑制剂(α1P(i))的结合速率降低3个数量级,同时使HNE与支气管黏液抑制剂(MBI)之间的结合常数增加10倍以上。体内实验表明,缺乏抗凝活性的肝素片段能够几乎完全消除单次气管内给予200微克HNE诱导的小鼠肺气肿病变。长链不饱和脂肪酸肽缀合物被描述为竞争性HNE抑制剂(Hornebeck W.等人,1985年)。我们合成了N-油酰肝素衍生物(每分子肝素含3个油酰基团);这种亲脂性糖胺聚糖(LipoGAG)虽然作为弹性蛋白保护剂起作用,但与肝素相比,其HNE抑制能力较低。然而,相比之下,它能够抑制其他丝氨酸蛋白酶,如尿激酶、纤溶酶、猪胰α-糜蛋白酶和弹性蛋白酶。因此,这种Lipo GAG在组织重塑或肿瘤侵袭过程中可用于控制基质金属蛋白酶(MMP)。

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