首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Thiocyanate hydrolase, the primary enzyme initiating thiocyanate degradation in the novel obligately chemolithoautotrophic halophilic sulfur-oxidizing bacterium Thiohalophilus thiocyanoxidans.
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Thiocyanate hydrolase, the primary enzyme initiating thiocyanate degradation in the novel obligately chemolithoautotrophic halophilic sulfur-oxidizing bacterium Thiohalophilus thiocyanoxidans.

机译:硫氰酸盐水解酶是在新型专化化自养嗜盐硫氧化细菌硫硫嗜硫细菌中起主要作用的硫氰酸盐降解的主要酶。

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摘要

Thiohalophilus thiocyanoxidans is a first halophilic sulfur-oxidizing chemolithoautotrophic bacterium capable of growth with thiocyanate as an electron donor at salinity up to 4 M NaCl. The cells, grown with thiocyanate, but not with thiosulfate, contained an enzyme complex hydrolyzing thiocyanate to sulfide and ammonia under anaerobic conditions with carbonyl sulfide as an intermediate. Despite the fact of utilization of the , high cyanase activity was also detected in thiocyanate-induced cells. Three-stage column chromotography resulted in a highly purified thiocyanate-hydrolyzing protein with an apparent molecular mass of 140 kDa that consists of three subunits with masses 17, 19 and 29 kDa. The enzyme is a Co,Fe-containing protein resembling on its function and subunit composition the enzyme thiocyanate hydrolase from the Betaproteobacterium Thiobacillus thioparus. Cyanase, copurified with thiocyanate hydrolase, is a bisubstrate multisubunit enzyme with an apparent subunit molecular mass of 14 kDa. A possible role of cyanase in thiocyanate degradation by T. thiocyanoxidans is discussed.
机译:硫代嗜盐硫硫菌是第一种嗜盐硫氧化化能自养细菌,能够在最高4 M NaCl的盐度下以硫氰酸盐作为电子供体生长。用硫氰酸盐而不是硫代硫酸盐生长的细胞含有酶复合物,该酶复合物在厌氧条件下以羰基硫为中间体将硫氰酸盐水解为硫化物和氨。尽管利用了,但在硫氰酸盐诱导的细胞中也检测到高的氰化酶活性。三级柱色谱法产生了表观分子量为140 kDa的高度纯化的硫氰酸盐水解蛋白,该蛋白由质量为17、19和29 kDa的三个亚基组成。该酶是一种含Co,Fe的蛋白质,其功能和亚基组成类似于来自Betaproteobacterbacterium thioparillus thioparus的硫氰酸酶水解酶。与硫氰酸盐水解酶共纯化的氰基酶是一种双底物多亚基酶,其表观亚基分子量为14 kDa。讨论了氰化酶在硫代衣藻氧化硫氰化物降解中的可能作用。

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