Wu Qiang, Li Fangbiao, Wang Weixun, Hecht Michael H, Spiro Thomas G
Department of Chemistry, Princeton University, Princeton, NJ 08544, USA.
J Inorg Biochem. 2002 Feb;88(3-4):381-7. doi: 10.1016/s0162-0134(01)00354-3.
UV resonance Raman bands of Cu-bound and protonated histidine residues have been detected in (2)H(2)O solutions of poplar plastocyanin. For the Cu(II) protein, slow NH-(2)H exchange of the His37 ligand was monitored via the growth of bands at 1389 and 1344 cm(-1) when Pcy was exchanged into (2)H(2)O, or via their diminution when the protein was exchanged back into H(2)O; the rate constant is 7 x 10(-4)/s at pH (p(2)H) 7.4 at room temperature. The slow exchange is attributed to imidazole H-bonding to a backbone carbonyl. Nearby bands at 1397 and 1354 cm(-1), appear and disappear within the mixing time, and are assigned to the solvent-exposed His87 ligand. The approximately 10 cm(-1) differences between His37 and His87 are attributed to the effect of H-bonding on the imidazole ring modes. The UVRR spectra of the Cu(I) protein in (2)H(2)O reveal a 1408 cm(-1) band, characteristic of NH-(2)H-exchanged histidinium, which grows in as the p(2)H is lowered. Its intensity follows a titration curve with pK(a)=4.6. This protonation is assigned to the His87 residue, whose bond to the Cu(I) is known from crystallography to be broken at low pH. As the 1408 cm(-1) band grows, a band at 1345 cm(-1) diminishes, while another, at 1337 cm(-1) stays constant. These are assigned to modes of bound His87 and His37, respectively, shifted down 7-9 cm(-1) from their Cu(II) positions.
在杨树质体蓝素的重水((^{2}H_{2}O))溶液中已检测到与铜结合和质子化的组氨酸残基的紫外共振拉曼谱带。对于铜(II)蛋白,当质体蓝素(Pcy)交换到重水((^{2}H_{2}O))中时,通过(1389)和(1344 cm^{-1})处谱带的增长来监测His37配体缓慢的(NH-^{2}H)交换,或者当蛋白再交换回普通水((H_{2}O))时通过谱带的减弱来监测;在室温下,(pH)((p_{2}H))为(7.4)时,速率常数为(7×10^{-4}/s)。这种缓慢的交换归因于咪唑与主链羰基的氢键作用。在混合时间内出现并消失的(1397)和(1354 cm^{-1})附近的谱带,被归属于溶剂暴露的His87配体。His37和His87之间约(10 cm^{-1})的差异归因于氢键对咪唑环模式的影响。重水((^{2}H_{2}O))中铜(I)蛋白的紫外共振拉曼光谱显示出一个(1408 cm^{-1})的谱带,这是(NH-^{2}H)交换的组氨酸鎓的特征谱带,随着(p_{2}H)降低而增强。其强度遵循(pK_{a}=4.6)的滴定曲线。这种质子化被归属于His87残基,从晶体学可知,在低(pH)下它与铜(I)的键会断裂。随着(1408 cm^{-1})谱带增强,(1345 cm^{-1})处的谱带减弱,而(1337 cm^{-1})处的另一个谱带保持不变。这些分别被归属于结合的His87和His37的模式,相对于它们在铜(II)状态下的位置下移了(7 - 9 cm^{-1})。