Reductive Alkylation Causes the Formation of a Molten Globule-Like Intermediate Structure in Geobacillus zalihae Strain T1 Thermostable Lipase

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作者
Kok Whye Cheong
Thean Chor Leow
Raja Noor Zaliha Raja Abd Rahman
Mahiran Basri
Mohd Basyaruddin Abdul Rahman
Abu Bakar Salleh
机构
[1] Universiti Putra Malaysia,Institute of Bioscience
[2] Universiti Putra Malaysia,Department of Cell and Molecular Biology, Faculty of Biotechnology and Biomolecular Sciences
[3] Universiti Putra Malaysia,Department of Microbiology, Faculty of Biotechnology and Biomolecular Sciences
[4] Universiti Putra Malaysia,Department of Biochemistry, Faculty of Biotechnology and Biomolecular Sciences
[5] Universiti Putra Malaysia,Department of Chemistry, Faculty of Science
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关键词
Chemical modification; Reductive alkylation; Circular dichroism; Thermostable lipase; Molten globule;
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摘要
A thermostable lipase from Geobacillus zalihae strain T1 was chemically modified using propionaldehyde via reductive alkylation. The targeted alkylation sites were lysines, in which T1 lipase possessed 11 residues. Far-UV circular dichroism (CD) spectra of both native and alkylated enzyme showed a similar broad minimum between 208 and 222 nm, thus suggesting a substantial amount of secondary structures in modified enzyme, as compared with the corresponding native enzyme. The hydrolytic activity of the modified enzymes dropped drastically by nearly 15-fold upon chemical modification, despite both the native and modified form showed distinctive α-helical bands at 208 and 222 nm in CD spectra, leading us to the hypothesis of formation of a molten globule (MG)-like structure. As cooperative unfolding transitions were observed, the modified lipase was distinguished from the native state, in which the former possessed a denaturation temperature (Tm) in lower temperature range at 61 °C while the latter at 68 °C. This was further supported by 8-anilino-1-naphthalenesulfonic acid (ANS) probed fluorescence which indicated higher exposure of hydrophobic residues, consequential of chemical modification. Based on matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) analysis, a small number of lysine residues were confirmed to be alkylated.
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页码:362 / 375
页数:13
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