首页> 外文期刊>BMC Biochemistry >Three genes expressing Kunitz domains in the epididymis are related to genes of WFDC-type protease inhibitors and semen coagulum proteins in spite of lacking similarity between their protein products
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Three genes expressing Kunitz domains in the epididymis are related to genes of WFDC-type protease inhibitors and semen coagulum proteins in spite of lacking similarity between their protein products

机译:尽管它们的蛋白质产物之间缺乏相似性,但在附睾中表达Kunitz结构域的三个基因与WFDC型蛋白酶抑制剂和精液凝结蛋白的基因有关。

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We have previously identified a locus on human chromosome 20q13.1, encompassing related genes of postulated WFDC-type protease inhibitors and semen coagulum proteins. Three of the genes with WFDC motif also coded for the Kunitz-type protease inhibitor motif. In this report, we have reinvestigated the locus for homologous genes encoding Kunitz motif only. The identified genes have been analyzed with respect to structure, expression and function. We identified three novel genes; SPINT3, SPINT4 and SPINT5, and the structure of their transcripts were determined by sequencing of DNA generated by rapid amplification of cDNA ends. Each gene encodes a Kunitz domain preceded by a typical signal peptide sequence, which indicates that the proteins of 7.6, 8.7, and 9.7 kDa are secreted. Analysis of transcripts in 26 tissues showed that the genes predominantly are expressed in the epididymis. The recombinantly produced proteins could not inhibit the amidolytic activity of trypsin, chymotrypsin, plasmin, thrombin, coagulation factor Xa, elastase, urokinase and prostate specific antigen, whereas similarly made bovine pancreatic trypsin inhibitor (BPTI) had the same bioactivity as the protein isolated from bovine pancreas. The similar organization, chromosomal location and site of expression, suggests that the novel genes are homologous with the genes of WFDC-type protease inhibitors and semen coagulum proteins, despite the lack of similarity in primary structure of their protein products. Their restricted expression to the epididymis suggests that they could be important for male reproduction. The recombinantly produced proteins are presumably bioactive, as demonstrated with similarly made BPTI, but may have a narrower spectrum of inhibition, as indicated by the lacking activity against eight proteases with differing specificity. Another possibility is that they have lost the protease inhibiting properties, which is typical of Kunitz domains, in favor of hitherto unknown functions.
机译:我们以前已经确定了人类染色体20q13.1上的一个基因座,该基因座包含假定的WFDC型蛋白酶抑制剂和精液凝结蛋白的相关基因。具有WFDC基序的三个基因也编码了Kunitz型蛋白酶抑制剂基序。在本报告中,我们重新研究了仅编码Kunitz基序的同源基因的基因座。已对鉴定出的基因进行了结构,表达和功能方面的分析。我们鉴定了三个新基因; SPINT3,SPINT4和SPINT5及其转录物的结构是通过对cDNA末端快速扩增产生的DNA进行测序来确定的。每个基因编码一个典型信号肽序列后的Kunitz域,这表明分泌7.6、8.7和9.7 kDa的蛋白质。对26个组织的转录本进行分析后发现,这些基因主要在附睾中表达。重组产生的蛋白质不能抑制胰蛋白酶,胰凝乳蛋白酶,纤溶酶,凝血酶,凝血因子Xa,弹性蛋白酶,尿激酶和前列腺特异性抗原的酰胺分解活性,而类似制备的牛胰胰蛋白酶抑制剂(BPTI)具有与分离自胰蛋白酶的蛋白质相同的生物活性。牛胰腺。尽管它们的蛋白质产物的一级结构缺乏相似性,但相似的组织,染色体的位置和表达的位点表明,该新基因与WFDC型蛋白酶抑制剂和精液凝结蛋白的基因同源。它们对附睾的限制性表达表明它们对于雄性生殖可能很重要。重组产生的蛋白质大概具有生物活性,如用类似的BPTI所证明的那样,但抑制作用的范围较窄,如对八种具有不同特异性的蛋白酶缺乏活性所表明。另一种可能性是,它们失去了蛋白酶抑制特性,这是Kunitz结构域的典型特征,有利于迄今未知的功能。

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