1 |
Evaluation of in vitro refolding vs cold shock expression: Production of a low yielding single chain variable fragment Vermeulen JG, Burt F, van Heerden E, Cason E, Meiring M Protein Expression and Purification, 151, 62, 2018 |
2 |
Gold nanoparticles immobilized on porous monoliths obtained from disulfide-based dimethacrylate: Application to supported catalysis Poupart R, Le Droumaguet B, Guerrouache M, Grande D, Carbonnier B Polymer, 126, 455, 2017 |
3 |
Improvement in the thermostability of chitosanase from Bacillus ehimensis by introducing artificial disulfide bonds Sheng J, Ji XF, Zheng Y, Wang ZP, Sun M Biotechnology Letters, 38(10), 1809, 2016 |
4 |
Expression and purification of a new recombinant camel hepcidin able to promote the degradation of the iron exporter ferroportin1 Boumaiza M, Jaouen M, Deschemin JC, Ezzine A, Ben Khalaf N, Vaulont S, Marzouki MN, Sari MA Protein Expression and Purification, 115, 11, 2015 |
5 |
Enhancing the Thermostability of a Cold-Active Lipase from Penicillium cyclopium by In Silico Design of a Disulfide Bridge Tan ZB, Li JF, Wu MC, Wang JQ Applied Biochemistry and Biotechnology, 173(7), 1752, 2014 |
6 |
Expression and purification of mouse peptide ESP4 in Escherichia coli Hirakane M, Taniguchi M, Yoshinaga S, Misumi S, Terasawa H Protein Expression and Purification, 96, 20, 2014 |
7 |
Engineering the thermostability of a xylanase from Aspergillus oryzae by an enhancement of the interactions between the N-terminus extension and the beta-sheet A2 of the enzyme Chen ZF, Zhang HM, Wang JQ, Tang CD, Wu J, Wu MC Biotechnology Letters, 35(12), 2073, 2013 |
8 |
Improved thermal performance of Thermomyces lanuginosus GH11 xylanase by engineering of an N-terminal disulfide bridge Wang YW, Fu Z, Huang HQ, Zhang HS, Yao B, Xiong HR, Turunen O Bioresource Technology, 112, 275, 2012 |
9 |
Development of thermostable Candida antarctica lipase B through novel in silico design of disulfide bridge Quang ATL, Joo JC, Yoo YJ, Kim YH Biotechnology and Bioengineering, 109(4), 867, 2012 |
10 |
Extrusion of the C-terminal helix in navel orangeworm moth pheromone-binding protein (AtraPBP1) controls pheromone binding Xu W, Xu XZ, Leal WS, Ames JB Biochemical and Biophysical Research Communications, 404(1), 335, 2011 |