He Z, Sundström V, Pullerits T
Department of Chemical Physics, Lund University, P.O. Box 124, S-22100 Lund, Sweden.
FEBS Lett. 2001 May 4;496(1):36-9. doi: 10.1016/s0014-5793(01)02400-0.
We have studied van der Waals contacts of the carotenoid rhodopin glucoside (RG) with the bacteriochlorophyll pigments absorbing at 800 nm (B800) in the crystal structure of Rhodopseudomonas acidophila, and the hydrogen positions were determined from quantum chemical calculations at the Hartree--Fock (6-31G) level. We have found strong evidence for hydrogen bonding between the B800 BChl and the RG from neighboring protomer units. The binding energy was estimated to be about 2 kcal/mol (700 cm(-1)). CI-singles approach and time-dependent density functional theory calculations of the B800--RG dimer indicate a red-shift (ca 2 nm) of the B800 Q(y) transition, along with a substantial increase of its oscillator strength, probably due to the hydrogen bonding.
我们研究了嗜酸性红假单胞菌晶体结构中类胡萝卜素视紫红质葡糖苷(RG)与吸收波长为800nm的细菌叶绿素色素(B800)之间的范德华接触,并通过在哈特里-福克(6-31G)水平的量子化学计算确定了氢的位置。我们发现了来自相邻原聚体单元的B800细菌叶绿素和RG之间存在氢键的有力证据。结合能估计约为2千卡/摩尔(700厘米-1)。B800-RG二聚体的CI-单重态方法和含时密度泛函理论计算表明,B800 Q(y)跃迁发生红移(约2nm),同时其振子强度大幅增加,这可能是由于氢键作用。