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来自嗜热栖热菌的乙酰辅酶A合成酶(生成ADP)的纯化及性质,该酶是参与乙酸生成和ATP合成的古细菌酶。

Purification and properties of acetyl-CoA synthetase (ADP-forming), an archaeal enzyme of acetate formation and ATP synthesis, from the hyperthermophile Pyrococcus furiosus.

作者信息

Glasemacher J, Bock A K, Schmid R, Schønheit P

机构信息

Institut für Pflanzenphysiologie und Mikrobiologie, Fachbereich Biologie der Freien Universität, Berlin, Germany.

出版信息

Eur J Biochem. 1997 Mar 1;244(2):561-7. doi: 10.1111/j.1432-1033.1997.00561.x.

Abstract

Acetyl-CoA synthetase (ADP-forming) is an enzyme in Archaea that catalyzes the formation of acetate from acetyl-CoA and couples this reaction with the synthesis of ATP from ADP and Pi (acetyl-CoA + ADP + Pi --> acetate + ATP + CoA) [Schifer, T., Selig, M. & Schonheit, P. (1993) Arch. Microbiol. 159, 72-83]. The enzyme from the anaerobic hyperthermophile Pyrococcus furiosus was purified 96-fold with a yield of 20% to apparent electrophoretic homogeneity. The oxygen-stable enzyme had an apparent molecular mass of 145 kDa and was composed of two subunits with apparent molecular masses of 47 kDa and 25 kDa, indicating an alpha2beta2 structure. The N-terminal amino acid sequences of both subunits were determined; they do not show significant identity to other proteins in databases. The purified enzyme catalyzed the reversible conversion of acetyl-CoA, ADP and Pi to acetate, ATP and CoA. The apparent Vmax value in the direction of acetate formation was 18 U/mg (55 degrees C), the apparent Km values for acetyl-CoA, ADP and Pi were 17 microM, 60 microM and 200 microM, respectively. ADP and Pi could not be replaced by AMP and PPi, defining the enzyme as an ADP-forming rather than an AMP-forming acetyl-CoA synthetase. The apparent Vmax value in the direction of acetyl-CoA formation was about 40 U/mg (55 degrees C), and the apparent Km values for acetate, ATP and CoA were 660 microM, 80 microM and 30 microM, respectively. The purified enzyme was not specific for acetyl-CoA or acetate, in addition to acetyl-CoA (100%), the enzyme accepts propionyl-CoA (110%) and butyryl-CoA (92%), and in addition to acetate (100%), the enzyme accepts propionate (100%), butyrate (92%), isobutyrate (79%), valerate (36%) and isovalerate (34%), indicating that the enzyme functions as an acyl-CoA synthetase (ADP-forming) with a broad substrate spectrum. Succinate, phenylacetate and indoleacetate did not serve as substrates for the enzyme (<3%). In addition to ADP (100%), GDP (220%) and IDP (250%) were used, and in addition to ATP (100%), GTP (210%) and ITP (320%) were used. Pyrimidine nucleotides were not accepted. The enzyme was dependent on Mg2+, which could be partly substituted by Mn2+ and Co2+. The pH optimum was pH 7. The enzyme has a temperature optimum at 90 degrees C, which is in accordance with its physiological function under hyperthermophilic conditions. The enzyme was stabilized against heat inactivation by salts. In the presence of KCI (1 M), which was most effective, the enzyme did not loose activity after 2 h incubation at 100 degrees C.

摘要

乙酰辅酶A合成酶(生成ADP)是古菌中的一种酶,它催化从乙酰辅酶A形成乙酸盐,并将此反应与由ADP和磷酸合成ATP的过程偶联起来(乙酰辅酶A + ADP + 磷酸 --> 乙酸盐 + ATP + 辅酶A)[施费尔,T.,塞利格,M. & 舍恩海特,P.(1993年)《微生物学档案》159卷,72 - 83页]。来自厌氧嗜热菌激烈火球菌的这种酶被纯化了96倍,产率为20%,达到了表观电泳均一性。这种对氧稳定的酶表观分子量为145 kDa,由两个表观分子量分别为47 kDa和25 kDa的亚基组成,表明其结构为α2β2。两个亚基的N端氨基酸序列都已确定;它们与数据库中的其他蛋白质没有显著的同源性。纯化后的酶催化乙酰辅酶A、ADP和磷酸可逆地转化为乙酸盐、ATP和辅酶A。乙酸盐形成方向的表观Vmax值为18 U/mg(55℃),乙酰辅酶A、ADP和磷酸的表观Km值分别为17 μM、60 μM和200 μM。ADP和磷酸不能被AMP和焦磷酸替代,这表明该酶是生成ADP的乙酰辅酶A合成酶,而非生成AMP的。乙酰辅酶A形成方向的表观Vmax值约为40 U/mg(55℃),乙酸盐、ATP和辅酶A的表观Km值分别为660 μM、80 μM和30 μM。纯化后的酶对乙酰辅酶A或乙酸盐没有特异性,除了乙酰辅酶A(100%)外,该酶还能接受丙酰辅酶A(110%)和丁酰辅酶A(92%),除了乙酸盐(100%)外,还能接受丙酸盐(100%)、丁酸盐(92%)、异丁酸盐(79%)、戊酸盐(36%)和异戊酸盐(34%),这表明该酶作为一种具有广泛底物谱的(生成ADP的)酰基辅酶A合成酶发挥作用。琥珀酸盐、苯乙酸盐和吲哚乙酸盐不是该酶的底物(<3%)。除了ADP(100%)外,还使用GDP(220%)和IDP(250%),除了ATP(100%)外,还使用GTP(210%)和ITP(320%)。嘧啶核苷酸不被接受。该酶依赖Mg2+,Mg2+可部分被Mn2+和Co2+替代。最适pH为7。该酶的最适温度为90℃,这与其在嗜热条件下的生理功能相符。盐可使该酶稳定,防止其热失活。在最有效的KCl(1 M)存在下,该酶在100℃孵育2小时后仍不失活。

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