补充 发表于 2025-3-25 06:35:30
http://reply.papertrans.cn/24/2330/232924/232924_21.png亲密 发表于 2025-3-25 11:08:42
The Framework of Computational Protein Designeins are computationally designed from the level of amino acids to the level of a functional protein complex. Design targets range from increased thermo- (or other) stability to specific requested reactions such as protein–protein binding, enzymatic reactions, or nanotechnology applications. The desindubitable 发表于 2025-3-25 11:53:42
http://reply.papertrans.cn/24/2330/232924/232924_23.pngNATAL 发表于 2025-3-25 16:23:14
Production of Computationally Designed Small Soluble- and Membrane-Proteins: Cloning, Expression, andifficult to express in good amounts for experiments. Over-expression of such proteins can be achieved by using the solubility tag such as maltose binding protein (MBP), Thioredoxin (Trx), and Gultathione-S-transferase (GST) fused to the protein of interest. Here, we describe and provide the protoco使熄灭 发表于 2025-3-25 20:44:50
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http://reply.papertrans.cn/24/2330/232924/232924_26.png胰岛素 发表于 2025-3-26 07:29:57
Modeling Binding Affinity of Pathological Mutations for Computational Protein Designcal processes. The functional characterization of such interactions at molecular level is necessary, not only to understand biological and pathological phenomena but also to design improved, or even new interfaces, or to develop new therapeutic approaches. X-ray crystallography and NMR spectroscopy薄荷醇 发表于 2025-3-26 11:52:38
http://reply.papertrans.cn/24/2330/232924/232924_28.pngKaleidoscope 发表于 2025-3-26 15:00:36
http://reply.papertrans.cn/24/2330/232924/232924_29.pngODIUM 发表于 2025-3-26 19:17:05
Applications of Normal Mode Analysis Methods in Computational Protein Designy and dynamics as well as the generation of biologically relevant conformational ensembles. Given the interplay between flexibility and enzymatic activity, the combined analysis of stability and dynamics using the Elastic Network Contact Model (ENCoM) method has ample applications in protein enginee