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Expression and characterization of human bifunctional peptidylglycine alpha-amidating monooxygenase

机译:人双功能肽基甘氨酸α-酰胺化单加氧酶的表达和表征

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We report the purification and characterization of human bifunctional peptidylglycine alpha-amidating monooxygenase (the bifunctional PAM) expressed in Chinese hamster ovary cells. PAM is in charge of the formation of the C-terminal amides of biologically active peptides. The bifunctional PAM possesses two catalytic domains in a single polypeptide, peptidylglycine alpha-hydroxylating monooxygenase (PHM, EC 1.14.17.3) and peptidylamidoglycolate lyase (PAL, EC 4.3.2.5). By introducing a stop codon (835)Glu, we were able to eliminate the membrane-spanning domain in the C-terminal region and succeeded in purifying a soluble form of bifunctional PAM that was secreted into the medium. Through a three-step purification procedure, we obtained 0.3 mg of the purified PAM, which showed a single band at 91 kDa on SDS-PAGE, from I L of monolayer culture medium. Metals contained in the purified PAM were analyzed and chemical modifications were performed to gain insight into the mechanism of the PAL reaction. Inductively coupled plasma detected 0.62 mol of Zn2+ and 1.25 mol of Cu2+ per mol of bifunctional PAM. Further, the addition of 1 mM EDTA reduced the PAL activity by about 50%, but the decreased activity was recovered by the addition of an excess amount of Zn2+. In a series of chemical modifications, phenylglyoxal almost completely eliminated the PAL activity and diethyl pyrocarbonate suppressed activity by more than 70%. These findings implied that Arg and His residues might play crucial roles during catalysis. (C) 2002 Elsevier Science (USA). All rights reserved. [References: 33]
机译:我们报道了在中国仓鼠卵巢细胞中表达的人双功能肽基甘氨酸α-酰胺化单加氧酶(双功能PAM)的纯化和鉴定。 PAM负责生物活性肽C末端酰胺的形成。双功能PAM在单个多肽中具有两个催化结构域,肽基甘氨酸α-羟基化单加氧酶(PHM,EC 1.14.17.3)和肽基酰胺基乙醇酸裂解酶(PAL,EC 4.3.2.5)。通过引入终止密码子(835)Glu,我们能够消除C端区域的跨膜结构域,并成功纯化了分泌到培养基中的双功能PAM的可溶形式。通过三步纯化程序,我们从I L单层培养基中获得0.3 mg纯化的PAM,在SDS-PAGE上显示91 kDa的单条带。分析了纯化的PAM中包含的金属,并进行了化学修饰以深入了解PAL反应的机理。电感耦合等离子体检测到每摩尔双功能PAM检测到0.62摩尔Zn2 +和1.25摩尔Cu2 +。此外,添加1 mM EDTA会使PAL活性降低约50%,但通过添加过量的Zn2 +可以恢复降低的活性。在一系列化学修饰中,苯乙二醛几乎完全消除了PAL活性,而焦碳酸二乙酯抑制活性超过70%。这些发现表明,Arg及其残基可能在催化过程中起关键作用。 (C)2002 Elsevier Science(美国)。版权所有。 [参考:33]

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