Suzuki Yutaka, Takano Kazufumi, Kanaya Shigenori
Department of Material and Life Science, Graduate School of Engineering, Osaka University, Suita, Osaka, Japan.
FEBS J. 2005 Feb;272(3):632-42. doi: 10.1111/j.1742-4658.2004.04468.x.
FKBP22 from a psychrotrophic bacterium Shewanella sp. SIB1, is a dimeric protein with peptidyl prolyl cis-trans isomerase (PPIase) activity. According to homology modeling, it consists of an N-terminal domain, which is involved in dimerization of the protein, and a C-terminal catalytic domain. A long alpha3 helix spans these domains. An N-domain with the entire alpha3 helix (N-domain+) and a C-domain with the entire alpha3 helix (C-domain+) were overproduced in Escherichia coli in a His-tagged form, purified, and their biochemical properties were compared with those of the intact protein. C-domain+ was shown to be a monomer and enzymatically active. Its optimum temperature for activity (10 degrees C) was identical to that of the intact protein. Determination of the PPIase activity using peptide and protein substrates suggests that dimerization is required to make the protein fully active for the protein substrate or that the N-domain is involved in substrate-binding. The differential scanning calorimetry studies revealed two distinct heat absorption peaks at 32.5 degrees C and 46.6 degrees C for the intact protein, and single heat absorption peaks at 44.7 degrees C for N-domain+ and 35.6 degrees C for C-domain+. These results indicate that the thermal unfolding transitions of the intact protein at lower and higher temperatures represent those of C- and N-domains, respectively. Because the unfolding temperature of C-domain+ is much higher than its optimum temperature for activity, SIB1 FKBP22 may adapt to low temperatures by increasing a local flexibility around the active site. This study revealed the relationship between the stability and the activity of a psychrotrophic FKBP22.
来自嗜冷细菌希瓦氏菌属SIB1的FKBP22是一种具有肽基脯氨酰顺反异构酶(PPIase)活性的二聚体蛋白。根据同源建模,它由一个参与蛋白质二聚化的N端结构域和一个C端催化结构域组成。一个长的α3螺旋跨越这些结构域。带有完整α3螺旋的N结构域(N结构域+)和带有完整α3螺旋的C结构域(C结构域+)以His标签形式在大肠杆菌中过量表达、纯化,并将它们的生化特性与完整蛋白的生化特性进行比较。结果表明C结构域+是单体且具有酶活性。其活性的最适温度(10℃)与完整蛋白的相同。使用肽和蛋白质底物测定PPIase活性表明,二聚化是使该蛋白对蛋白质底物完全有活性所必需的,或者N结构域参与底物结合。差示扫描量热法研究显示,完整蛋白在32.5℃和46.6℃有两个明显的吸热峰,N结构域+在44.7℃有一个单一吸热峰,C结构域+在35.6℃有一个单一吸热峰。这些结果表明,完整蛋白在较低和较高温度下的热解折叠转变分别代表C结构域和N结构域的热解折叠转变。由于C结构域+的解折叠温度远高于其活性最适温度,SIB1 FKBP22可能通过增加活性位点周围的局部柔韧性来适应低温。本研究揭示了嗜冷FKBP22的稳定性与活性之间的关系。