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Characterization of the Pseudomonas pseudoalcaligenes CECT5344 Cyanase, an Enzyme That Is Not Essential for Cyanide Assimilation

机译:Pseudomonas pseudoalcaligenes CECT5344氰酶(一种对氰化物同化作用不是必需的酶)的表征

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Cyanase catalyzes the decomposition of cyanate into CO2 and ammonium, with carbamate as an unstable intermediate. The cyanase of Pseudomonas pseudoalcaligenes CECT5344 was negatively regulated by ammonium and positively regulated by cyanate, cyanide, and some cyanometallic complexes. Cyanase activity was not detected in cell extracts from cells grown with ammonium, even in the presence of cyanate. Nevertheless, a low level of cyanase activity was detected in nitrogen-starved cells. The cyn gene cluster of P. pseudoalcaligenes CECT5344 was cloned and analyzed. The cynA, cynB, and cynD genes encode an ABC-type transporter, the cynS gene codes for the cyanase, and the cynF gene encodes a novel σ54-dependent transcriptional regulator which is not present in other bacterial cyn gene clusters. The CynS protein was expressed in Escherichia coli and purified by following a simple and rapid protocol. The P. pseudoalcaligenes cyanase showed an optimal pH of 8.5°C and a temperature of 65°C. An insertion mutation was generated in the cynS gene. The resulting mutant was unable to use cyanate as the sole nitrogen source but showed the same resistance to cyanate as the wild-type strain. These results, in conjunction with the induction pattern of the enzymatic activity, suggest that the enzyme has an assimilatory function. Although the induction of cyanase activity in cyanide-degrading cells suggests that some cyanate may be generated from cyanide, the cynS mutant was not affected in its ability to degrade cyanide, which unambiguously indicates that cyanate is not a central metabolite in cyanide assimilation.
机译:氰化酶以氨基甲酸酯为不稳定中间体,催化氰酸盐分解为CO2和铵。假单胞假单胞菌CECT5344的氰化酶被铵负调控,而被氰酸盐,氰化物和某些氰金属配合物正调控。即使在存在氰酸盐的情况下,在用铵盐生长的细胞的细胞提取物中也未检测到氰化酶活性。然而,在氮饥饿的细胞中检测到低水平的氰化酶活性。克隆并分析了假拟青霉CECT5344的cyn基因簇。 cynA,cynB和cynD基因编码ABC型转运蛋白,cynS基因编码氰酶,而cynF基因编码新型σ54依赖性转录调节因子,在其他细菌cyn基因簇中不存在。 CynS蛋白在大肠杆菌中表达,并通过简单而快速的方法纯化。拟青假单胞菌的氰化酶显示最佳pH值为8.5°C,温度为65°C。在cynS基因中产生了插入突变。所得突变体不能使用氰酸盐作为唯一的氮源,但显示出与野生型菌株相同的对氰酸盐的抗性。这些结果,结合酶促活性的诱导模式,表明该酶具有同化功能。尽管在降解氰化物的细胞中诱导氰化酶活性表明可能从氰化物生成了一些氰酸盐,但cynS突变体的降解氰化物的能力并未受到影响,这明确表明氰酸盐不是氰化物同化过程中的主要代谢产物。

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