Le Rosemary K, Raeeszadeh-Sarmazdeh Maryam, Boder Eric T, Frymier Paul D
Department of Chemical and Biomolecular Engineering, ‡Institute for Biomedical Engineering, and §Bredesen Center for Interdisciplinary Research and Graduate Education, University of Tennessee-Knoxville , Knoxville, Tennessee 37966-2200, United States.
Langmuir. 2015 Jan 27;31(3):1180-8. doi: 10.1021/la5031284. Epub 2015 Jan 8.
Sortase-mediated ligation was used to attach the photosystem I (PSI) complex from Synechocystis sp. PCC 6803 in a preferential orientation to enhance photoinduced electron flow to a conductive gold surface. Ideally, this method can result in a uniform monolayer of protein, covalently bound unidirectionally to the electrode surface. The exposed C-termini of the psaE subunits of the PSI trimer were targeted to contain an LPETG-sortase recognition sequence to increase noncompeting electron transfer by uniformly orienting the PSI stromal side proximal to the surface. Surface characterization with atomic force microscopy suggested that monolayer formation and optimal surface coverage occurred when the gold surfaces were incubated with peptide at 100 to 500 μM concentrations. When photochronoamperometry with potassium ferrocyanide and ferricyanide as redox mediators was used, photocurrents in the range of 100 to 200 nA/cm(2) were produced, which is an improvement over other attachment techniques for photosystem monolayers that produce approximately 100 nA/cm(2) or less. This work demonstrated that sortase-mediated ligation aided in the control of PSI orientation on modified gold surfaces with a distribution of 94% stromal side proximal and 6% lumenal side proximal to the surface for current-producing PSI.
分选酶介导的连接用于将来自集胞藻属PCC 6803的光系统I(PSI)复合物以优先取向连接到导电金表面,以增强光诱导电子流向该表面。理想情况下,这种方法可以形成均匀的蛋白质单层,共价且单向地结合到电极表面。PSI三聚体的psaE亚基暴露的C末端含有LPETG-分选酶识别序列,通过将PSI基质侧均匀地定向在靠近表面的位置来增加非竞争性电子转移。原子力显微镜的表面表征表明,当金表面与浓度为100至500μM的肽孵育时,会形成单层并实现最佳表面覆盖。当使用亚铁氰化钾和铁氰化钾作为氧化还原介质进行光计时电流法时,产生的光电流范围为100至200 nA/cm²,这比其他用于光系统单层的附着技术有所改进,后者产生的光电流约为100 nA/cm²或更低。这项工作表明,分选酶介导的连接有助于控制修饰金表面上PSI的取向,对于产生电流的PSI,其分布为94%的基质侧靠近表面,6%的腔侧靠近表面。