References

109

27 Silva, C.M., Carneiro, F., O’Neill, A. et al. (2005). Cutinase? A new tool for

biomodification of synthetic fibers. Journal of Polymer Science Part A: Polymer

Chemistry 43: 2448–2450.

28 Eyheraguibel, B., Traikia, M., Fontanella, S. et al. (2017). Characterization of

oxidized oligomers from polyethylene films by mass spectrometry and NMR

spectroscopy before and after biodegradation by a Rhodococcus rhodochrous

strain. Chemosphere 184: 366–374.

29 Yoon, M.G., Jeon, H.J., and Kim, M.N. (2012). Biodegradation of polyethylene by

a soil bacterium and AlkB cloned recombinant cell. Journal of Bioremediation &

Biodegradation 3: 145.

30 Danso, D., Schmeisser, C., Chow, J. et al. (2018). New insights into the function

and global distribution of polyethylene terephthalate (PET)-degrading bacteria

and enzymes in marine and terrestrial metagenomes. Applied and Environmental

Microbiology 84 (8): e02773–e02717.

31 Howard, G.T. and Blake, R.C. (1998). Growth of Pseudomonas fluorescens

on a polyester–polyurethane and the purification and characterization of a

polyurethanase–protease enzyme. International Biodeterioration and Biodegrada-

tion 42: 213–220. https://doi.org/10.1016/S0964-8305(98)00051-1.

32 Martinez-Martinez, M., Coscolin, C., Santiago, G. et al. (2018). Determinants and

prediction of esterase substrate promiscuity patterns. ACS Chemical Biology 13:

225–234. https://doi.org/10.1021/acschembio.7b00996.

33 Yasuhira, K., Uedo, Y., Shibata, N. et al. (2006). Crystallization and X-ray diffrac-

tion analysis of 6-aminohexanoatecyclic-dimer hydrolase from Arthrobacter sp.

KI72. Acta Crystallographica Section F: Structural Biology Communications 62:

1209–1211. https://doi.org/10.1107/S1744309106045076.

34 Deguchi, T., Kitaoka, Y., Kakezawa, M. et al. (1998). Purification and character-

ization of a nylon-degrading enzyme. Applied Environmental Microbiology 64:

1366–1371.

35 Delacuvellerie, A., Cyriaque, V., Gobert, S. et al. (2019). The plastisphere

in marine ecosystem hosts potential specific microbial degraders including

Alcanivorax borkumensis as a key player for the low-density polyethylene degra-

dation. Journal of Hazardous Materials 380 (2019): 120899.

36 Slater, S.C., Voige, W.H., and Dennis, D.E. (1988). Cloning and expression in

Escherichia coli of the Alcaligenes eutrophus H16 poly-β-hydroxybutyrate biosyn-

thesis pathway. Journal of Bacteriology 170: 4431–44436.

37 Herrero-Acero, E., Ribitsch, D., Dellacher, A. et al. (2013). Surface engineering

of a cutinase from Thermobifida cellulosilytica for improved polyester hydroly-

sis. Biotechnology and Bioengineering 110: 2581–2590. https://doi.org/10.1002/bit

.24930.