Hou C T
Biochemistry. 1975 Aug 26;14(17):3899-902. doi: 10.1021/bi00688a025.
Circular dichroism studies have been carried out on both apo- and holoprotocatechuate 3,4-dioxygenase from Pseudomonas aeruginosa, in the absence and presence of competitive inhibitors, protocatechualdehyde and 4-nitrocatechol. The apo- and holoenzyme showed identical spectra in the ultraviolet region between 200 and 250 nm (peptide back bone region), but the low intensity negative bands at 330 and 480 nm of the holoenzyme were completely absent in the apoenzyme. On the side chain region, the positive ellipticity peaks of the holoenzyme change into a lower intensity and broader band indicating the participation of aromatic amino acid residues in the primary binding of iron ion. Under anaerobic conditions, spectral changes were evident in the side chain region for the binary complexes of both the holo- and the apoenzyme with protocatechuate. The presence of iron in the holoenzyme results in an increase in positive ellipticity between 290 and 320 nm. Either with or without the iron, the enzyme protein binds protocatechuate and has a greater positive circular dichroism increase at 240-260 nm. CD difference spectra indicate that the modes of binding to form the binary complexes of holo- or apoenzyme with either substrates or competitive inhibitors are different. The bound iron ion stimulates binding. Spectral changes of the holoenzyme in the aromatic region were also observed in different pH environments of lower enzymatic activity. It is still not established whether these aromatic residues play an active or passive role in the binding of iron and/or substrates and inhibitors.
对来自铜绿假单胞菌的脱辅基原儿茶酸3,4-双加氧酶和全酶,在存在和不存在竞争性抑制剂原儿茶醛和4-硝基儿茶酚的情况下进行了圆二色性研究。脱辅基酶和全酶在200至250nm的紫外区域(肽主链区域)显示出相同的光谱,但全酶在330和480nm处的低强度负带在脱辅基酶中完全不存在。在侧链区域,全酶的正椭圆率峰转变为强度较低且更宽的带,表明芳香族氨基酸残基参与了铁离子的初级结合。在厌氧条件下,全酶和脱辅基酶与原儿茶酸的二元复合物在侧链区域的光谱变化很明显。全酶中铁的存在导致290至320nm之间的正椭圆率增加。无论有无铁,酶蛋白都能结合原儿茶酸,并且在240 - 260nm处具有更大的正圆二色性增加。圆二色性差异光谱表明,全酶或脱辅基酶与底物或竞争性抑制剂形成二元复合物的结合模式不同。结合的铁离子刺激结合。在较低酶活性的不同pH环境中也观察到了全酶在芳香族区域的光谱变化。这些芳香族残基在铁和/或底物及抑制剂的结合中是起主动还是被动作用仍未确定。