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通过在大肠杆菌中表达及体外重折叠对多功能动物脂肪酸合酶的丙二酰/乙酰转酰基酶结构域进行表征。

Characterization of the malonyl-/acetyltransacylase domain of the multifunctional animal fatty acid synthase by expression in Escherichia coli and refolding in vitro.

作者信息

Rangan V S, Serre L, Witkowska H E, Bari A, Smith S

机构信息

Children's Hospital Oakland Research Institute, Oakland, CA 94609, USA.

出版信息

Protein Eng. 1997 May;10(5):561-6. doi: 10.1093/protein/10.5.561.

Abstract

cDNAs of various lengths encoding the second domain of the multifunctional fatty acid synthase (FAS) have been expressed in Escherichia coli and the recombinant proteins refolded in vitro to catalytically active monomeric malonyl-/acetyltransacylases. FAS residues 428-487, previously thought to represent the amino terminus of the malonyl-/acetyltransacylase, can be omitted from the recombinant enzyme with no loss in catalytic activity. This shortened transacylase, consisting of FAS residues 488-809, can be repeatedly denatured and renatured in vitro with reproducibly high recovery and no loss in specific activity. When expressed as a soluble enzyme in Spodoptera frugiperda cells, this transacylase has the same specific activity as the enzyme that has been refolded in vitro. The refolded transacylase consisting of FAS residues 488-809, but not the longer enzyme consisting of residues 428-815, can be crystallized readily. These results suggest that FAS residues 428-487, previously thought to represent the amino terminus of the malonyl-/acetyltransacylase, are not required for catalysis of the transacylase reaction. This region of the FAS is less well conserved than the transacylase catalytic domain and may constitute an extended structural linker that facilitates the functional interaction between the transacylase and acyl carrier protein domains.

摘要

编码多功能脂肪酸合酶(FAS)第二个结构域的各种长度的cDNA已在大肠杆菌中表达,重组蛋白在体外重折叠成具有催化活性的单体丙二酸单酰/乙酰转酰酶。FAS的428 - 487位残基,以前被认为是丙二酸单酰/乙酰转酰酶的氨基末端,可从重组酶中省略而不损失催化活性。这种缩短的转酰酶由FAS的488 - 809位残基组成,可在体外反复变性和复性,具有可重复的高回收率且比活性无损失。当在草地贪夜蛾细胞中作为可溶性酶表达时,这种转酰酶具有与在体外重折叠的酶相同的比活性。由FAS的488 - 809位残基组成的重折叠转酰酶,而不是由428 - 815位残基组成的更长的酶,能够很容易地结晶。这些结果表明,以前被认为是丙二酸单酰/乙酰转酰酶氨基末端的FAS的428 - 487位残基,对于转酰酶反应的催化不是必需的。FAS的这一区域不如转酰酶催化结构域保守,可能构成一个延伸的结构连接体,促进转酰酶和酰基载体蛋白结构域之间的功能相互作用。

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