前列腺特异性抗原-蛋白水解胰岛素样生长因子结合蛋白-3的生化分析。

Growth regulation Pub Date : 1994-12-01
P J Fielder, R G Rosenfeld, H C Graves, K Grandbois, C A Maack, S Sawamura, Y Ogawa, A Sommer, P Cohen
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引用次数: 0

摘要

前列腺特异性抗原(PSA)已被证实可使IGFBP-3蛋白水解。然而,蛋白质水解的裂解位点和机制尚不清楚。在这项研究中,我们将重组人IGFBP-3与PSA结合到固相载体上进行蛋白水解。将反应混合物离心分离,PSA为固相,水解后的IGFBP-3为水相。通过亲和标记和Western ligand blotting (WLB)对IGFBP-3片段进行功能分析。进一步的生化分析是用IGFBP-3特异性抗血清(α - bp -3 g1)对总蛋白进行银染色和免疫反应片段进行Western免疫印迹(WIB)。对固定化IGFBP-3片段进行n端序列分析,sds -聚丙烯酰胺电泳分离大小。PSA将IGFBP-3蛋白水解成至少7个片段(M(r) 26 kDa至13 kDa),经银染色和WIB鉴定。用放射性标记的IGF-I或IGF-II亲和标记至少可以看到3个片段,WLB弱可见4个片段。这些数据表明一些IGFBP-3片段保留了它们结合IGF的能力。n端序列分析显示IGFBP-3中至少有5个不同的PSA蛋白水解识别位点。5个位点中有3个与“钾化钾素样”酶活性一致,2个位点与“凝乳胰蛋白酶样”酶活性一致。α -1抗凝乳胰蛋白酶和凝乳抑制素能够阻断放射性标记的IGFBP-3的PSA切割,进一步证实了PSA的凝乳促胰蛋白酶活性。(摘要删节250字)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biochemical analysis of prostate specific antigen-proteolyzed insulin-like growth factor binding protein-3.

Prostate specific antigen (PSA) has been shown to proteolyze IGFBP-3. However, the cleavage sites and mechanism of proteolysis are unknown. In this study, we proteolyzed recombinant human IGFBP-3 with PSA bound to a solid phase support. The reaction mixture was separated by centrifugation, with PSA remaining in the solid phase and the proteolyzed IGFBP-3 in the aqueous phase. The IGFBP-3 fragments were functionally analyzed by affinity labeling and Western ligand blotting (WLB). Further biochemical analyses were provided by silver staining of total protein and Western immunoblotting (WIB) of immunoreactive fragments with an IGFBP-3 specific antiserum (alpha-BP-3 g1). N-terminal sequence analysis was performed on filter-immobilized IGFBP-3 fragments, following size separation by SDS-polyacrylamide electrophoresis. PSA proteolyzed IGFBP-3 into at least 7 fragments (M(r) of 26 kDa to 13 kDa) as identified by silver staining and WIB. At least 3 fragments were visible by affinity labeling with radiolabeled IGF-I or IGF-II and 4 were weakly visible by WLB. These data indicate that some IGFBP-3 fragments retain their ability to bind IGF. N-terminal sequence analysis revealed at least 5 different proteolytic recognition sites for PSA in IGFBP-3. Three of the 5 sites were consistent with a 'kallikrein-like' enzymatic activity and 2 sites were consistent with a 'chymotryptic-like' enzymatic activity. The chymotryptic activity of PSA was further confirmed by the ability of alpha-1-antichymotrypsin and chymostatin to block PSA cleavage of radiolabeled IGFBP-3.(ABSTRACT TRUNCATED AT 250 WORDS)

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