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首页> 外文期刊>Protein and peptide letters >Protein acyltransferase function of purified calreticulin: The exclusive role of P-domain in mediating protein acylation utilizing acyloxycoumarins and acetyl CoA as the Acyl group donors
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Protein acyltransferase function of purified calreticulin: The exclusive role of P-domain in mediating protein acylation utilizing acyloxycoumarins and acetyl CoA as the Acyl group donors

机译:纯化钙网蛋白的蛋白酰基转移酶功能:P结构域在利用酰氧基香豆素和乙酰辅酶A作为酰基供体的介导蛋白酰化中的独特作用

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摘要

The distinct biochemical function of endoplasmic reticulum (ER) protein Calreticulin (CR) catalyzing the transfer of acyl group from acyloxycoumarin to a receptor protein was termed calreticulin transacylase (CRTAase). The present study, unlike the previous reports of others utilizing CR-deficient cells alone, dealt with the recombinant CR domains of Heamonchus contortus (rhCRTAase) in order to examine their CRTAase activity. P-domain of rhCR unlike Nand C-domains was found to be endowed with CRTAase function. We have also observed for the first time acetyl CoA, as a substrate for rhCRTAase/P-domain mediated acetylation of recombinant Schistosoma japonicum glutathione Stransferase (rGST). rhCRTAase/P-domain were also found to undergo autoacylation by acyloxycoumarins. Also, the isolated autoacylated rhCRTAase/P-domain in non-denatured form alone exhibited the ability to transfer acyl group to rGST indicating the stable intermediate nature of acylated CR. P-domain catalyzed acetylation of rGST by 7,8-Diacetoxy-4methylcoumarin or acetyl CoA resulted in the modification of several lysine residues in common was evidenced by LCMS/ MS analysis. The putative site of the binding of acyloxycoumarins with CR was predicted by computational blind docking studies. The results showed the involvement of two lysine residues Lys-173 and Lys-174 present in P-domain for binding acyloxycoumarins and acetyl CoA thus highlighting that the active site for the CRTAase activity would reside in the P-domain of CR. Certain ER proteins are known to undergo acetylation under the physiological conditions involving acetyl CoA. These results demonstrating CRTAase mediated protein acetylation by acetyl CoA may hint at CR as the possible protein acetyltransferase of the ER lumen.
机译:内质网(ER)蛋白钙网蛋白(CR)催化酰基从酰氧基香豆素向受体蛋白转移的独特生化功能被称为钙网蛋白转酰酶(CRTAase)。本研究与先前其他报道仅利用CR缺陷细胞的报道不同,本研究处理了扭曲的Heamonchus contortus(rhCRTAase)的重组CR结构域,以检查其CRTAase活性。与N和C结构域不同,rhCR的P结构域被赋予CRTAase功能。我们还首次观察到乙酰辅酶A,作为重组人血吸虫谷胱甘肽谷胱甘肽转移酶(rGST)的rhCRTAase / P结构域介导的乙酰化的底物。还发现rhCRTAase / P结构域被酰氧基香豆素进行自动酰化。而且,单独的未变性形式的分离的自动酰化的rhCRTAase / P结构域表现出将酰基转移至rGST的能力,表明了酰化的CR的稳定的中间体性质。通过LCMS / MS分析证明,7,8-二乙酰氧基-4甲基香豆素或乙酰辅酶A的p域催化rGST的乙酰化导致共同修饰多个赖氨酸残基。推定的酰氧基香豆素与CR的结合位点是通过计算机盲对接研究预测的。结果显示,存在于P结构域中的两个赖氨酸残基Lys-173和Lys-174与结合酰氧基香豆素和乙酰辅酶A结合,从而强调了CRTAase活性的活性位点将位于CR的P结构域中。已知某些ER蛋白在涉及乙酰辅酶A的生理条件下经历乙酰化。这些结果表明CRTAase通过乙酰辅酶A介导的蛋白质乙酰化可能暗示CR是ER内腔的可能蛋白质乙酰转移酶。

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