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A complex of novel protease inhibitor ovostatin homolog with its cognate proteases in immature mice uterine luminal fluid

机译:新型蛋白酶抑制剂卵抑素同系物及其相关蛋白酶在未成熟小鼠子宫腔液中的复合物

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摘要

A predominant gelatinolytic enzyme with approximately 26 kDa was observed in gelatin zymogram of immature mice uterine luminal fluid (ULF). Size exclusion analysis revealed that the native size of this enzyme was close to that of human α2-macroglobulin (α2-MG), a 725 kDa protein. This large protease was isolated by a series of chromatographic steps on the Sephacryl S-400 and DEAE-Sepharose columns. The results from gelatin zymography and SDS-PAGE analysis supported that this large protease consists of gelatinolytic enzyme and a 360 kDa protein. Through tandem mass spectrometry analysis followed by MASCOT database search, the 360 kDa protein was identified as ovostatin homolog (accession: ) assigned as a homolog of chicken ovostatin, a protease inhibitor. The co-fractionation analysis by gel filtration and mouse ovostatin homolog (mOH) co-immunoprecipitation experiments demonstrated that the mOH formed a complex with three gelatinolytic enzymes in immature mice ULF. Substrate zymography analysis revealed that the mOH-associated gelatinolytic enzymes were suitable to digest type I collagen rather than type IV collagen. In addition, the refolded mOH-associated 26 kDa gelatinolytic enzyme displayed the type I collagen-digesting activity in the assay, but the other two enzymes did not have this function. RT-PCR analysis showed that mOH gene was abundantly expressed in brain, spinal cord, lung, uterus, and in 17-day embryo. Taken together, our data suggest that mOH/cognate protease system may play a potential role in regulation of tissue remodeling and fetal development.
机译:在未成熟小鼠子宫腔液(ULF)的明胶酶图中,观察到一种主要的明胶分解酶,其分子量约为26 kDa。大小排阻分析显示该酶的天然大小接近人α2-巨球蛋白(α2-MG)(725 kDa蛋白质)的大小。通过在Sephacryl S-400和DEAE-Sepharose色谱柱上的一系列色谱步骤分离出这种大蛋白酶。明胶酶谱分析和SDS-PAGE分析的结果支持这种大的蛋白酶由明胶分解酶和360 kDa蛋白组成。通过串联质谱分析,然后通过MASCOT数据库搜索,将360 kDa蛋白鉴定为卵抑素同源物(登录号:),其指定为蛋白酶抑制剂鸡卵抑素的同源物。通过凝胶过滤和小鼠卵抑素同源物(mOH)共同免疫沉淀实验进行的共级分分析表明,mOH在未成熟的小鼠ULF中与三种明胶分解酶形成了复合物。底物酶谱分析显示,与mOH相关的明胶分解酶适合消化I型胶原而不是IV型胶原。此外,重新折叠的与mOH相关的26 kDa明胶分解酶在测定中显示出I型胶原消化活性,而其他两种酶则没有此功能。 RT-PCR分析表明,mOH基因在脑,脊髓,肺,子宫和17天胚胎中大量表达。两者合计,我们的数据表明,mOH /同源蛋白酶系统可能在调节组织重塑和胎儿发育中发挥潜在作用。

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