首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Structure and function analysis of urinary trypsin inhibitor (UTI): identification of binding domains and signaling property of UTI by analysis of truncated proteins
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Structure and function analysis of urinary trypsin inhibitor (UTI): identification of binding domains and signaling property of UTI by analysis of truncated proteins

机译:尿胰蛋白酶抑制剂(UTI)的结构和功能分析:通过截短蛋白分析鉴定UTI的结合域和信号传导特性

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摘要

The binding of urinary trypsin inhibitor (UTI) to its binding sites/receptors on tumor cells inhibits cell invasion in a number of experimental systems and that UTI downregulates constitutive and phorbol ester-induced urokinase production by certain tumor cells. To determine whether the carbohydrate moieties and core protein are required for urokinase suppression, we obtained UTI derivatives that contained O-glycoside-linked N-terminal glycopeptide (UTIml), N-glycoside-linked C-terminal tandem Kunitz domains (UTIm2), UTI lacking O-glycoside (UTIc), asialo UTI (UTIa), UTI lacking N-glycoside (UTIn), purified Kunitz domain II of UTI (HI-8), and recombinant Kunitz domain II of UTI (R-020). The IC_(50) of inhibiting binding of ~(125)I-labeled UTI to cells was indistinguishable for UTIa, UTIn and intact UTI, whereas the IC_(50) for inhibiting binding of ~(125)I-labeled UTI to cells was 2.5-, 25-and 29-fold greater for UTIm1, UTIm2 and UTIc than for native UTI. We next looked at the suppression of the urokinase expression by UTI derivatives. An enzyme-linked immunosorbent assay was carried out to measure secreted and cell-associated urokinase. Intact UTI, UTIa, or UTIn effectively suppressed urokinase expression, but UTIm1, UTIm2, UTIc, HI-8 and R-020 had no significant effect. These data show that UTI requires either the N-terminal extension with the O-linked carbohydrate moiety (chondroitin 4-sulfate sugar side chain; Alal to Lys2l residues) or the Kunitz domain I (Lys22 to Arg77 residues) of UTI to bind to cells, but the urokinase expression was inhibited only by the O-glycoside-linked core protein without the N-glycoside side chain.
机译:尿胰蛋白酶抑制剂(UTI)与其在肿瘤细胞上的结合位点/受体的结合在许多实验系统中抑制了细胞的侵袭,而UTI下调了某些肿瘤细胞的组成型和佛波酯诱导的尿激酶生成。为了确定抑制尿激酶是否需要碳水化合物部分和核心蛋白,我们获得了包含O-糖苷连接的N-末端糖肽(UTIml),N-糖苷连接的C-末端串联Kunitz结构域(UTIm2)的UTI衍生物。缺少O-糖苷(UTIc),无唾液酸UTI(UTIa),缺少N-糖苷(UTIn)的UTI,纯化的UTI Kunitz域II(HI-8)和重组的UTI Kunitz域II(R-020)。抑制〜(125)I标记的UTI与细胞结合的IC_(50)对于UTIa,UTIn和完整的UTI是无法区分的,而抑制〜(125)I标记的UTI与细胞结合的IC_(50)是与本地UTI相比,UTIm1,UTIm2和UTIc高出2.5倍,25倍和29倍。接下来,我们研究了UTI衍生物对尿激酶表达的抑制作用。进行了酶联免疫吸附测定,以测量分泌的和细胞相关的尿激酶。完整的UTI,UTIA或UTIn有效抑制了尿激酶的表达,但UTIm1,UTIm2,UTIC,HI-8和R-020没有明显作用。这些数据表明,UTI要求具有O-连接的碳水化合物部分(软骨素4硫酸糖侧链; A1至Lys2l残基)的N端延伸或UTI的Kunitz域I(Lys22至Arg77残基)与细胞结合。 ,但尿激酶表达仅受O-糖苷连接的核心蛋白抑制,而没有N-糖苷侧链。

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