Literature DB >> 24962117

Enzymatic hydrolysis of nylons: quantification of the reaction rate of nylon hydrolase for thin-layered nylons.

Keisuke Nagai1, Kazuki Iida, Kimiaki Shimizu, Ryo Kinugasa, Motoki Izumi, Dai-Ichiro Kato, Masahiro Takeo, Kozo Mochiji, Seiji Negoro.   

Abstract

Nylon hydrolase degrades various aliphatic nylons, including nylon-6 and nylon-66. We synthesized a nylon-66 copolymer (M w = 22,900, M n = 7,400), in which a part of an adipoyl unit (32 % molar ratio) of nylon-66 was replaced with a succinyl unit by interfacial polymerization. To quantify the reaction rate of the enzymatic hydrolysis of nylons at the surface of solid polymers, we prepared a thin layer of nylons on the bottom surface of each well in a polystyrene-based micro-assay plate. The thickness of the nylon layer was monitored by imaging analysis of the photographic data. More than 99 % of the copolymer with thicknesses of 260 nm (approximately 600 layers of polymer strands) were converted to water-soluble oligomers by nylon hydrolase (3 mg enzyme ml(-1)) at 30 °C within 60 h. These results were further confirmed by TLC analysis of the reaction products and by assay of liberated amino groups in the soluble fractions. The degradation rate of the thin-layered nylon-6 was similarly analyzed. We demonstrate that this assay enables a quantitative evaluation of the reaction rate of hydrolysis at the interface between the solid and aqueous phases and a quantitative comparison of the degradability for various polyamides.

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Year:  2014        PMID: 24962117     DOI: 10.1007/s00253-014-5885-2

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  3 in total

1.  Draft Genome Sequence of the Nylon Oligomer-Degrading Bacterium Arthrobacter sp. Strain KI72.

Authors:  Ikki Takehara; Dai-Ichiro Kato; Masahiro Takeo; Seiji Negoro
Journal:  Genome Announc       Date:  2017-04-27

2.  Structural basis of the correct subunit assembly, aggregation, and intracellular degradation of nylon hydrolase.

Authors:  Seiji Negoro; Naoki Shibata; Young-Ho Lee; Ikki Takehara; Ryo Kinugasa; Keisuke Nagai; Yusuke Tanaka; Dai-Ichiro Kato; Masahiro Takeo; Yuji Goto; Yoshiki Higuchi
Journal:  Sci Rep       Date:  2018-06-27       Impact factor: 4.379

Review 3.  Back-to-monomer recycling of polycondensation polymers: opportunities for chemicals and enzymes.

Authors:  Shanmugam Thiyagarajan; Evelien Maaskant-Reilink; Tom A Ewing; Mattijs K Julsing; Jacco van Haveren
Journal:  RSC Adv       Date:  2022-01-05       Impact factor: 3.361

  3 in total

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