Department of Chemical Sciences , Tata Institute of Fundamental Research , Homi Bhabha Road, Colaba , Mumbai 400 005 , India.
J Phys Chem B. 2019 Dec 26;123(51):10967-10979. doi: 10.1021/acs.jpcb.9b07827. Epub 2019 Dec 12.
Recent reports of distinctive UV-vis absorption profiles for monomeric proteins rich in charged amino acids that span 250-800 nm have opened up a new label-free optical spectral window for probing biomolecular structure and interactions. Combined experimental-computational studies have revealed that such broad absorption profiles of these proteins arise from photoexcited charge transfer (CT) transitions in spatially proximal charged amino acids such as lysine (Lys) and glutamate (Glu). Here, using time-dependent density functional theory (TDDFT) with an optimally tuned CAM-B3LYP functional, we refine the computed UV-vis spectra for Lys-Glu dimers within protein folds and quantify the percentage CT character of the constituent transitions. The optimally tuned functionals are derived through a careful analysis of the CAM-B3LYP parameter space for Lys-Glu dimers as a function of amino-acid conformation and side chain separation. Our studies reveal that the tuned Lys-Glu dimer spectrum spans 150-650 nm and possesses 5 specific types of CT excitations with diverse and large spatial charge separation length scales of 2-10 Å. These include inter-/intra-residue peptide backbone to peptide backbone (BB-CT) excitations spanning 160-210 nm, inter-/intra-residue peptide backbone to side chain (BS-CT) excitations spanning 160-260 nm, and side chain to side chain (SS-CT) excitations, which show the broadest absorption range spanning 260-650 nm.
最近有报道称,富含带电荷氨基酸的单体蛋白质具有独特的紫外可见吸收谱,其范围为 250-800nm,这为探测生物分子结构和相互作用开辟了一个新的无标记光学光谱窗口。结合实验和计算研究表明,这些蛋白质的这种宽吸收谱源于空间上相近的带电荷氨基酸(如赖氨酸(Lys)和谷氨酸(Glu))的光激发电荷转移(CT)跃迁。在这里,我们使用经过最佳调整的 CAM-B3LYP 函数的时间依赖密度泛函理论(TDDFT),对蛋白质折叠内的 Lys-Glu 二聚体的计算紫外可见光谱进行了优化,并量化了组成跃迁的 CT 特征的百分比。最佳调整的函数是通过对 Lys-Glu 二聚体的 CAM-B3LYP 参数空间进行仔细分析得到的,该参数空间是作为氨基酸构象和侧链分离的函数。我们的研究表明,优化后的 Lys-Glu 二聚体光谱范围为 150-650nm,具有 5 种不同的 CT 激发类型,其空间电荷分离长度尺度广泛,为 2-10Å。这些包括 160-210nm 范围内的肽骨架间/内到肽骨架间(BB-CT)激发、160-260nm 范围内的肽骨架间/内到侧链(BS-CT)激发以及侧链间/内到侧链(SS-CT)激发,它们显示出最宽的吸收范围,为 260-650nm。