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Proteolysis of Complement Factors iC3b and C5 by the Serine Protease Prostate-Specific Antigen in Prostatic Fluid and Seminal Plasma

机译:补体的蛋白质水解由前列腺液和精浆丝氨酸蛋白酶前列腺特异性抗原因子的iC3b和C5

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摘要

Prostate-specific Ag (PSA) is a serine protease that is expressed exclusively by normal and malignant prostate epithelial cells. The continued high-level expression of PSA by the majority of men with both high- and low-grade prostate cancer throughout the course of disease progression, even in the androgen-ablated state, suggests that PSA has a role in the pathogenesis of disease. Current experimental and clinical evidence suggests that chronic inflammation, regardless of the cause, may predispose men to prostate cancer. The responsibility of the immune system in immune surveillance and eventually tumor progression is well appreciated but not completely understood. In this study, we used a mass spectrometry–based evaluation of prostatic fluid obtained from diseased prostates after removal by radical prostatectomy to identify potential immunoregulatory proteins. This analysis revealed the presence of Igs and the complement system proteins C3, factor B, and clusterin. Verification of these findings by Western blot confirmed the high-level expression of C3 in the prostatic fluid and the presence of a previously uncharacterized C-terminal C3 cleavage product. Biochemical analysis of this C3 cleavage fragment revealed a putative PSA cleavage site after tyrosine-1348. Purified PSA was able to cleave iC3b and the related complement protein C5. These results suggest a previously uncharacterized function of PSA as an immunoregulatory protease that could help to create an environment hospitable to malignancy through proteolysis of the complement system.
机译:前列腺特异性Ag(PSA)是一种丝氨酸蛋白酶,仅由正常和恶性前列腺上皮细胞表达。在疾病发展的整个过程中,即使在雄激素消融状态下,大多数患有高级别和低级别前列腺癌的男性仍持续高水平表达PSA,这表明PSA在疾病的发病机理中具有作用。当前的实验和临床证据表明,不论原因为何,慢性炎症都可能使男性患上前列腺癌。免疫系统在免疫监视和最终肿瘤进展中的责任已广为人知,但尚未完全了解。在这项研究中,我们使用了基于质谱的前列腺癌根治性切除术后从患病前列腺中获得的前列腺液的评估方法,以鉴定潜在的免疫调节蛋白。该分析揭示了Igs和补体系统蛋白C3,因子B和簇蛋白的存在。通过Western印迹对这些发现的验证证实了前列腺液中C3的高水平表达以及以前未鉴定的C端C3裂解产物的存在。此C3裂解片段的生化分析显示,酪氨酸1348后存在一个假定的PSA裂解位点。纯化的PSA能够切割iC3b和相关的补体蛋白C5。这些结果表明,PSA作为免疫调节蛋白酶具有以前无法表征的功能,可以通过补体系统的蛋白水解来帮助创造一个适合恶性肿瘤的环境。

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