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Effects of mutations in the helix G region of horseradish peroxidase

机译:辣根过氧化物酶螺旋G区突变的影响

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Horseradish peroxidase (HRP) has long attracted intense research interest and is used in many biotechnological fields, including diagnostics, biosensors and biocatalysis. Enhancement of HRP catalytic activity and/or stability would further increase its usefulness. Based on prior art, we substituted solvent-exposed lysine and glutamic acid residues near the proximal helix G (Lys 232, 241; Glu 238, 239) and between helices F and F' (Lys 174). Three single mutants (K232N, K232F, K241N) demonstrated increased stabilities against heat (up to 2-fold) and solvents (up to 4-fold). Stability gains are likely due to improved hydrogen bonding and space-fill characteristics introduced by the relevant substitution. Two double mutants showed stability gains but most double mutations were non-additive and non-synergistic. Substitutions of Lys 174 or Glu 238 were destabilising. Unexpectedly, notable alterations in steady-state Vm/E values occurred with reducing substrate ABTS (2,2'-azino-bis(3-ethylbenzthiazoline-6-sulphonic acid)), despite the distance of the mutated positions from the active site.
机译:辣根过氧化物酶(HRP)长期以来一直引起广泛的研究兴趣,并被用于许多生物技术领域,包括诊断,生物传感器和生物催化。 HRP催化活性和/或稳定性的增强将进一步提高其实用性。基于现有技术,我们用溶剂暴露的赖氨酸和谷氨酸残基取代了近螺旋G(Lys 232、241; Glu 238、239)和螺旋F和F'(Lys 174)之间。三个单一突变体(K232N,K232F,K241N)表现出增加的抗热(高达2倍)和溶剂(高达4倍)的稳定性。稳定性的提高可能归因于相关取代所带来的改善的氢键和空间填充特性。两个双突变体显示出稳定性增加,但大多数双突变是非加性和非协同的。 Lys 174或Glu 238的取代基不稳定。出乎意料的是,尽管突变位置与活性位点的距离较近,但降低的底物ABTS(2,2'-叠氮基双(3-乙基苯并噻唑啉-6-磺酸))却发生了稳态Vm / E值的显着变化。

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