Sung Y H, Shin J, Chang H J, Cho J M, Lee W
Department of Biochemistry and Protein Network Research Center, College of Science, Yonsei University, Seoul 120-740 Korea.
J Biol Chem. 2001 Jun 1;276(22):19624-30. doi: 10.1074/jbc.M100930200. Epub 2001 Mar 7.
Single-chain monellin (SCM), which is an engineered 94-residue polypeptide, has been characterized as being as sweet as native two-chain monellin. Data from gel-filtration high performance liquid chromatography and NMR has proven that SCM exists as a monomer in aqueous solution. In order to determine the structural origin of the taste of sweetness, we engineered several mutant SCM proteins by mutating Glu(2), Asp(7), and Arg(39) residues, which are responsible for sweetness. In this study, we present the solution structure, backbone dynamics, and stability of mutant SCM proteins using circular dichroism, fluorescence, and NMR spectroscopy. Based on the NMR data, a stable alpha-helix and five-stranded antiparallel beta-sheet were identified for double mutant SCM. Strands beta1 and beta2 are connected by a small bulge, and the disruption of the first beta-strand were observed with SCM(DR) comprising residues of Ile(38)-Cys(41). The dynamical and folding characteristics from circular dichroism, fluorescence, and backbone dynamics studies revealed that both wild type and mutant proteins showed distinct dynamical as well as stability differences, suggesting the important role of mutated residues in the sweet taste of SCM. Our results will provide an insight into the structural origin of sweet taste as well as the mutational effect in the stability of the engineered sweet protein SCM.
单链莫内林(SCM)是一种经改造的含94个残基的多肽,其甜度已被证实与天然双链莫内林相同。凝胶过滤高效液相色谱和核磁共振的数据已证明SCM在水溶液中以单体形式存在。为了确定甜味的结构起源,我们通过突变负责甜味的Glu(2)、Asp(7)和Arg(39)残基,构建了几种突变型SCM蛋白。在本研究中,我们利用圆二色性、荧光和核磁共振光谱法展示了突变型SCM蛋白的溶液结构、主链动力学和稳定性。基于核磁共振数据,确定了双突变型SCM存在一个稳定的α螺旋和一个五链反平行β折叠。β1链和β2链由一个小凸起相连,并且在包含Ile(38)-Cys(41)残基的SCM(DR)中观察到第一条β链的破坏。圆二色性、荧光和主链动力学研究的动力学和折叠特征表明,野生型和突变型蛋白均表现出明显的动力学和稳定性差异,这表明突变残基在SCM的甜味中起重要作用。我们的结果将为甜味的结构起源以及工程化甜味蛋白SCM稳定性的突变效应提供深入见解。