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Human laminin-332 degradation by Candida proteinases.

机译:人层粘连蛋白332被念珠菌蛋白酶降解。

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BACKGROUND: Human laminin-332 (Lm-332) degradation by 12 Candida strains and effects of synthetic proteinase inhibitors [Ilomastat (ILM), EDTA, chemically modified tetracycline-3(CMT-3), CMT-308, synthetic peptide CTT-2, and Pefabloc] were studied. MATERIALS AND METHODS: Laminin-332 was incubated with sonicated cell fractions and 10 times concentrated cell-free fractions of reference and clinical strains of C. albicans, C. dubliniensis, C. guilliermondii, C. glabrata, C. krusei, and C. tropicalis. Proteolysis, pH effects, and inhibitors were analyzed by fluorography and zymography. RESULTS: Cell fractions of all species except C. guilliermondii and cell-free fractions of C. albicans, and C. dubliniensis showed 20-70 kDa gelatinases at pH 5.0 and 6.0. At pH 7.6, C. glabrata, C. krusei, and C. tropicalis cell fractions and C. tropicalis cell-free fractions showed 55-70 kDa gelatinases. CMT-3, CMT-308, and CTT-2 inhibited Candida gelatinases slightly better than Pefabloc, ILM, and EDTA. No Candida fractions degraded Lm-332 at pH 7.6, but at pH 5.0, 100 kDa bands were generated by cell fractions of C. dubliniensis and C. tropicalis; C. albicans and C. glabrata clinical strains; and C. guilliermondii reference strain. C. krusei reference strain yielded three 100-130 kDa bands. C. albicans, C. dubliniensis, and C. tropicalis reference and clinical strain's cell-free fractions generated 100 kDa band. CONCLUSIONS: Laminin-332 degradation is pH-dependent and differences exist between studied Candida strains. Lm-332 degradation can exert functional disturbances on basement membrane integrity, possibly aiding Candida cell invasion into tissues. Certain synthetic matrix metalloproteinase inhibitors (CMTs, CTT) can inhibit Candida proteinases and may be therapeutically useful in future.
机译:背景:12种念珠菌对人层粘连蛋白332(Lm-332)的降解以及合成蛋白酶抑制剂的作用[伊洛马司他(ILM),EDTA,化学修饰的四环素-3(CMT-3),CMT-308,合成肽CTT-2 (和Pefabloc)进行了研究。材料与方法:将层粘连蛋白332与超声处理的细胞级分和白色和白色念珠菌,杜比里尼梭菌,古吉里蒙德氏菌,光滑念珠菌,克鲁斯氏梭菌和C.的临床菌株的10倍浓缩无细胞级分一起孵育。热带。通过荧光照相和酶谱分析蛋白水解,pH值影响和抑制剂。结果:除圭里氏梭菌(C. guilliermondii)和白色念珠菌(C. albicans)和杜布利尼梭菌(C. dubliniensis)的所有细胞组分外,在pH 5.0和6.0下显示20-70 kDa明胶酶。在pH 7.6时,光滑念珠菌,克鲁斯梭菌和热带梭菌细胞级分和热带梭菌无细胞级分显示55-70 kDa明胶酶。 CMT-3,CMT-308和CTT-2抑制念珠菌明胶酶的效果略好于Pefabloc,ILM和EDTA。在pH 7.6时,没有念珠菌级分降解Lm-332,但在pH 5.0时,杜氏梭状芽胞杆菌和热带梭状芽胞杆菌的细胞级分产生了100 kDa条带。白色念珠菌和光滑念珠菌临床菌株;和古氏梭菌参考菌株。克鲁氏梭菌参考菌株产生三个100-130 kDa条带。 C. albicans,C。dubliniensis和C.tropicalis参考和临床菌株的无细胞级分产生了100 kDa条带。结论:层粘连蛋白332降解是pH依赖性的,研究的念珠菌菌株之间存在差异。 Lm-332降解可对基底膜完整性造成功能障碍,可能有助于念珠菌细胞侵入组织。某些合成基质金属蛋白酶抑制剂(CMTs,CTT)可以抑制念珠菌蛋白酶,将来可能在治疗上有用。

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