首页> 外文期刊>Endocrine Research >Adrenal growth is controlled by expression of specific pro-opiomelanocortin serine protease in the outer adrenal cortex.
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Adrenal growth is controlled by expression of specific pro-opiomelanocortin serine protease in the outer adrenal cortex.

机译:肾上腺的生长受外肾上腺皮质中特异的opiomelanocortin丝氨酸蛋白酶表达的控制。

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摘要

As previous work had shown that extreme N-terminal fragments of the ACTH precursor pro-opiomelanocortin (POMC) not containing gamma-melanotropin (gamma-MSH) were active adrenal mitogens but an antiserum raised against gamma-MSH paradoxically also inhibited adrenal growth we proposed that the adrenal mitogen is processed from pro-gamma-MSH by a neurally controlled protease at the growing adrenal. To this end we have characterised a novel serine protease (named adrenal secretory protease (AsP) as Psort predicted a leader motif) which is expressed at the glomerulosa/fasciculata boundary where mitosis takes place. The expression of AsP was also found to be essential for mitosis of the adrenal cortical tumor Y1 cell-line in POMC containing media and 3D homology modeling revealed the presence of a catalytic pocket flanked by the classical His/Asp/Ser motifs. An usual feature of the model was a cluster of arginine residues on the underside of the protease suggesting that this basically charged face would tendto retain it on the cell surface on secretion-immunocytochemistry using an antiserum raised against a synthetic peptide spanning residues 1-25 of AsP showed that this was the case for Y1 cells. Specificity of AsP (affinity purified from Y1 media) was demonstrated by its inability to cleave model substrates for either trypsin or pro-hormone converting enzymes but was able to cleave an internally quenched POMC (44-55) model peptide. Interestingly mass spectral analysis of products of the latter predicts that the protease cleaves between the bond between Val52 and Met53 suggesting the natural adrenal mitogen is POMC (1-52).
机译:正如先前的研究表明,不含γ-促黑素(γ-MSH)的ACTH前体促黑素皮质激素(POMC)的N末端极端片段是活跃的肾上腺有丝分裂原,但是抗γ-MSH的抗血清反常也抑制了肾上腺的生长肾上腺有丝分裂原是由神经元控制的蛋白酶在生长的肾上腺中由前γ-MSH加工而成。为此,我们表征了一种新型的丝氨酸蛋白酶(命名为肾上腺分泌蛋白酶(AsP),Psort预测其为前导基序),该蛋白在发生有丝分裂的肾小球/ fasciculata边界表达。还发现AsP的表达对于含有POMC的培养基中的肾上腺皮质肿瘤Y1细胞系的有丝分裂是必不可少的,并且3D同源性模型揭示了侧接经典His / Asp / Ser图案的催化口袋的存在。该模型的通常特征是蛋白酶底面上的精氨酸残基簇,这表明该基本带电荷的面在分泌-免疫细胞化学中会使用一种针对跨越1-25位残基的合成肽的抗血清而倾向于将其保留在细胞表面上。 AsP表明,Y1细胞就是这种情况。 AsP(从Y1培养基中纯化的亲和力)的特异性通过其无法裂解胰蛋白酶或促激素转化酶的模型底物而得以证明,但能够裂解内部淬灭的POMC(44-55)模型肽。有趣的是,后者产物的质谱分析预测蛋白酶在Val52和Met53之间的键之间裂解,表明天然的肾上腺有丝分裂原是POMC(1-52)。

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