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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Clostridium thermocellum thermostable lichenase with circular permutations and modifications in the N-terminal region retains its activity and thermostability
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Clostridium thermocellum thermostable lichenase with circular permutations and modifications in the N-terminal region retains its activity and thermostability

机译:具有圆形置换和N-末端区域的梭菌热抑制性脱胶酶保留其活性和热稳定性

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The Clostridium thermocellum lichenase (endo-beta-1,3;1,4-glucan-D-glycosyl hydrolase) displays a high thermostability and specific activity and has a compact protein molecule, which makes it attractive, in particular, for protein engineering. We have utilized in silico analysis to construct circularly permuted (CP) variants and estimated the retained activity and thermostability. New open termini in the region of residues 53 or 99 in two lichenase CP variants (CN-53 and CN-99) had no effect on their activity and thermal tolerance versus another variant CP variant, CN-140 (cut in the region of residue 140), which displayed a dramatic decrease in the activity and thermostability. Construction and further activity and thermostability testing of the modified lichenase variants (M variants) and CP variants with peptides integrated via insertion fusion have demonstrated that the N-terminal regions in the lichenase catalytic domain (53 and 99 amino acid residues) that permit circular permutations with retention of activity and thermostability of the enzyme as well as the region between the C and N termini of the native lichenase in thermostable and active lichenase variants (CN-53 and CN-99) may be used for integrating small peptides without the loss of activity and thermostability. These findings not only suggest that CP predictions can be used in search for internal integration sites within protein molecule, but also form the background for further enzymatic engineering of the C. thermocellum thermostable lichenase aiming to create new fusion proteins. (C) 2014 Elsevier B.V. All rights reserved.
机译:梭菌热膨胀菌(Endo-Beta-1,3; 1,4-葡聚糖-D-糖基水解酶)显示出高温稳定性和特异性活性,并且具有紧凑的蛋白质分子,其使其具有吸引力,特别是蛋白质工程。我们在硅分析中使用,以构建圆形允许的(CP)变体并估计保留的活性和热稳定性。在两个辛烷酶CP变体中残留物53或99的区域中的新开口末端对其活性和热容耐受性没有影响,而另一个变体CP变体CN-140(在残余区域中切割) 140),其显着降低了活性和热稳定性。通过插入融合的肽的修饰的乳烯酶变体(M变体)和CP变体的构建和进一步的活性​​和热稳定性测试已经证明了允许圆形筛选的起始催化结构域(53和99个氨基酸残基)中的N-末端区域通过保留酶的活性和热稳定性以及热稳定和活性的起始酶变体(CN-53和CN-99)的天然原生状酶的C和N末端之间的区域可用于整合小肽而不会损失活性和热稳定性。这些发现不仅表明CP预测可以用于寻找蛋白质分子内的内部集成位点,而且还可以形成旨在产生新的融合蛋白的C.热膨胀性嗜热链塞类酶的进一步酶促工程的背景。 (c)2014 Elsevier B.v.保留所有权利。

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