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Cell-specific activity of neprilysin 2 isoforms and enzymic specificity compared with neprilysin.

机译:与脑啡肽酶相比脑啡肽酶2同工型的细胞特异性活性和酶学特异性。

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摘要

Neprilysin (NEP) 2 is a recently cloned glycoprotein displaying a high degree of sequence identity with neprilysin (EC 3.4.24.11), the prototypical member of the M13 subfamily of metalloproteases. Whereas NEP is involved in the metabolism of several bioactive peptides by plasma membranes of various cells, the enzymic properties and physiological functions of NEP2 are unknown. Here we characterize the cell-expression modalities and enzymic specificity of two alternatively spliced isoforms of NEP2 in Chinese hamster ovary and AtT20 cells. In the two cell lines, both isoforms are type II glycoproteins inserted in the endoplasmic reticulum as inactive precursors. Maturation detected by Western-blot analysis of glycosidase digests was cell-specific and more efficient in the endocrine cell line. The enzymic activity of both isoforms semi-purified from AtT20 cells reveals comparable specificities in terms of model substrates, pH optima and inhibitory patterns. NEP2 activity was compared with that of NEP regarding potencies of transition-state inhibitors, modes of hydrolysis, maximal hydrolysis rates and apparent affinities of bioactive peptides. Although all transition-state inhibitors of NEP inhibited NEP2 activity, albeit with different potencies, and many peptides were cleaved at the same amide bond by both peptidases, differences could be observed, i.e. in the hydrolysis of gonadotropin-releasing hormone and cholecystokinin, which occurred at different sites and more efficiently in the case of NEP2. Differences in cleavage of bioactive peptides, in cell-trafficking patterns and in tissue distribution indicate that NEP and NEP2 play distinct physiological roles in spite of their high degree of sequence identity.
机译:Neprilysin(NEP)2是最近克隆的糖蛋白,显示与neprolysin(EC 3.4.24.11)(金属蛋白酶M13亚家族的原型成员)具有高度的序列同一性。 NEP通过各种细胞的质膜参与几种生物活性肽的代谢,而NEP2的酶学性质和生理功能尚不清楚。在这里我们表征中国仓鼠卵巢和AtT20细胞中NEP2的两个交替剪接的亚型的细胞表达方式和酶学特异性。在这两种细胞系中,两种同工型都是作为非活性前体插入在内质网中的II型糖蛋白。通过糖苷酶消化物的蛋白质印迹分析检测到的成熟是细胞特异性的,并且在内分泌细胞系中更有效。从AtT20细胞中半纯化的两种同工型的酶活性在模型底物,最适pH和抑制模式方面显示出可比的特异性。在过渡态抑制剂的效力,水解方式,最大水解速率和生物活性肽的表观亲和力方面,将NEP2活性与NEP活性进行了比较。尽管所有NEP的过渡态抑制剂均抑制NEP2活性,尽管具有不同的效力,并且两个肽酶均在相同的酰胺键上裂解了许多肽,但可以观察到差异,即促性腺激素释放激素和胆囊收缩素的水解在NEP2的情况下,可以更有效地在不同站点进行。生物活性肽的裂解,细胞运输模式和组织分布的差异表明,尽管NEP和NEP2具有高度的序列同一性,它们仍发挥着独特的生理作用。

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