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Nitrile Hydratase and Amidase from Rhodococcus rhodochrous Hydrolyze Acrylic Fibers and Granular Polyacrylonitriles

机译:杜鹃红球菌水解腈纶和聚丙烯腈颗粒的腈水合酶和酰胺酶

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摘要

Rhodococcus rhodochrous NCIMB 11216 produced nitrile hydratase (320 nkat mg of protein−1) and amidase activity (38.4 nkat mg of protein−1) when grown on a medium containing propionitrile. These enzymes were able to hydrolyze nitrile groups of both granular polyacrylonitriles (PAN) and acrylic fibers. Nitrile groups of PAN40 (molecular mass, 40 kDa) and PAN190 (molecular mass, 190 kDa) were converted into the corresponding carbonic acids to 1.8 and 1.0%, respectively. In contrast, surfacial nitrile groups of acrylic fibers were only converted to the corresponding amides. X-ray photoelectron spectroscopy analysis showed that 16% of the surfacial nitrile groups were hydrolyzed by the R. rhodochrous enzymes. Due to the enzymatic modification, the acrylic fibers became more hydrophilic and thus, adsorption of dyes was enhanced. This was indicated by a 15% increase in the staining level (K/S value) for C.I. Basic Blue 9.
机译:当在含有丙腈的培养基上生长时,杜鹃红球菌NCIMB 11216产生腈水合酶(320 nkat mg的蛋白质-1)和酰胺酶活性(38.4 nkat mg的蛋白质-1)。这些酶能够水解颗粒状聚丙烯腈(PAN)和丙烯酸纤维的腈基。 PAN40(分子量为40 kDa)和PAN190(分子量为190 kDa)的腈基分别转化为相应的碳酸,分别为1.8%和1.0%。相反,丙烯酸纤维的表面腈基仅被转化为相应的酰胺。 X射线光电子能谱分析表明,表面的腈基中有16%被R.rhodochrous酶水解。由于酶促改性,丙烯酸纤维变得更加亲水,因此,染料的吸附得到增强。这通过C.I的染色水平(K / S值)增加15%来表明。碱性蓝9。

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