Bioinformatics Institute, 30 Biopolis Street, #07-01, Matrix, Singapore 138671 School of Computer Engineering, Nanyang Technological University, Singapore 639798.
Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, India.
Nucleic Acids Res. 2014 Jul;42(Web Server issue):W277-84. doi: 10.1093/nar/gku319. Epub 2014 Apr 29.
Temperature sensitive (Ts) mutants of proteins provide experimentalists with a powerful and reversible way of conditionally expressing genes. The technique has been widely used in determining the role of gene and gene products in several cellular processes. Traditionally, Ts mutants are generated by random mutagenesis and then selected though laborious large-scale screening. Our web server, TSpred (http://mspc.bii.a-star.edu.sg/TSpred/), now enables users to rationally design Ts mutants for their proteins of interest. TSpred uses hydrophobicity and hydrophobic moment, deduced from primary sequence and residue depth, inferred from 3D structures to predict/identify buried hydrophobic residues. Mutating these residues leads to the creation of Ts mutants. Our method has been experimentally validated in 36 positions in six different proteins. It is an attractive proposition for Ts mutant engineering as it proposes a small number of mutations and with high precision. The accompanying web server is simple and intuitive to use and can handle proteins and protein complexes of different sizes.
温度敏感(Ts)蛋白突变体为实验人员提供了一种强大且可逆转的条件性基因表达方法。该技术已广泛应用于确定基因及其产物在多种细胞过程中的作用。传统上,通过随机诱变生成 Ts 突变体,然后通过繁琐的大规模筛选进行选择。我们的网络服务器 TSpred(http://mspc.bii.a-star.edu.sg/TSpred/)现在使用户能够针对其感兴趣的蛋白质进行理性设计 Ts 突变体。TSpred 使用从一级序列和残基深度推断出的疏水性和疏水性矩,从 3D 结构推断出埋藏的疏水性残基来预测/识别。突变这些残基会导致 Ts 突变体的产生。我们的方法已在 6 种不同蛋白质的 36 个位置上进行了实验验证。它是 Ts 突变体工程的一个有吸引力的方案,因为它提出了少量的突变,具有高精度。随附的网络服务器使用简单直观,可以处理不同大小的蛋白质和蛋白质复合物。