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捻转血矛线虫对细胞外基质的降解

Extracellular matrix degradation by Haemonchus contortus.

作者信息

Rhoads M L, Fetterer R H

机构信息

Parasite Biology and Epidemiology Laboratory, United States Department of Agriculture, Beltsville, Maryland 20705, USA.

出版信息

J Parasitol. 1996 Jun;82(3):379-83.

PMID:8636839
Abstract

To better understand the in vivo function of secreted cysteine proteases of Haemonchus contortus, the ability of live parasites to degrade connective tissue was investigated using [3H]proline-labeled extracellular matrix produced by smooth-muscle cells (R22). The matrix was composed of glycoprotein(s) (34%), elastin (49%), and collagen (15%) in an insoluble, multilayered, cross-linked structure. No degradation of the extracellular matrix by third-stage larvae (L3) (10,000/ml) occurred during 24-hr in vitro incubation. In contrast, fourth-stage larvae (L4) (1,000/ml) degraded 42% of the matrix, whereas adults (100/ml) degraded the entire matrix. The presence of Z-phe-ala-FMK (100 microM), a specific cysteine protease inhibitor, during incubation of adults, reduced matrix degradation to 30% without affecting parasite motility. Isolated adult excretory/secretory products (ESP) (0.1 mg protein/ml) degraded 64% of the total matrix; specific degradation consisted of 80.3% of the glycoprotein, 67.1% of the elastin, and 27.6% of the collagen matrix components. Degradation of the matrix by ESP was stimulated by dithiothreitol (2 mM) and inhibited by Z-phe-ala-FMK. Thus, the secretory cysteine proteases of H. contortus are active under physiological conditions and able to degrade the major components of connective tissue in an in vitro model system that simulates their structure in vivo. These data strengthen the proposed role of these enzymes in the breakdown of host tissue.

摘要

为了更好地理解捻转血矛线虫分泌性半胱氨酸蛋白酶的体内功能,利用平滑肌细胞(R22)产生的[3H]脯氨酸标记的细胞外基质,研究了活寄生虫降解结缔组织的能力。该基质由糖蛋白(34%)、弹性蛋白(49%)和胶原蛋白(15%)组成,呈不溶性、多层、交联结构。在24小时的体外培养过程中,三期幼虫(L3)(10000/ml)未对细胞外基质产生降解。相比之下,四期幼虫(L4)(1000/ml)降解了42%的基质,而成虫(100/ml)则降解了整个基质。在成虫培养过程中加入特异性半胱氨酸蛋白酶抑制剂Z-苯丙氨酸-丙氨酸-氟甲基酮(Z-phe-ala-FMK)(100μM),可将基质降解率降至30%,且不影响寄生虫的运动能力。分离出的成虫排泄/分泌产物(ESP)(0.1mg蛋白/ml)降解了64%的总基质;特异性降解包括80.3%的糖蛋白、67.1%A的弹性蛋白和27.6%的胶原蛋白基质成分。二硫苏糖醇(2mM)刺激ESP对基质的降解,而Z-苯丙氨酸-丙氨酸-氟甲基酮则抑制这种降解。因此,在模拟其体内结构的体外模型系统中,捻转血矛线虫的分泌性半胱氨酸蛋白酶在生理条件下具有活性,能够降解结缔组织的主要成分。这些数据强化了这些酶在宿主组织分解中所起作用的观点。

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