Jezek P, Lillo P, Polecha J
Department of Membrane Transport Biophysics, Academy of Sciences of the Czech Republic, Prague, Czech Republic.
Gen Physiol Biophys. 1998 Jun;17(2):157-78.
Mitochondrial uncoupling protein (UcP) contains two tryptophans buried in transmembrane alpha-helices: Trp-173 at the matrix end of fourth alpha-helix and Trp-280 on the sixth alpha-helix. However, the steady-state emission of isolated UcP exhibited properties unusual for alpha-helices: maximum close to that of free tryptophan emission and low quantum yield of 0.04. The former suggests prevailing tryptophan contacts with hydrophilic residues and confirms Trp-173 proximity to the water/membrane interface and Trp-280 location near a water-filled nucleotide-binding-site cavity. The latter might indicate that transmembrane segments are not true alpha-helices. Measured depolarization factor of 0.6 suggests also their "breathing". Analysis of UcP emission decays, measured by time-correlated-single-photon-counting, yielded components 0.4-0.6 ns, 2.2-3 ns and 9-10 ns (or alternatively 0.1, 1.5, 4.3 and 12.2 ns; or 0.1-0.3, 1.2, 3.7 and 10.5 ns), very similar to those of free tryptophan in water, where the longest component belongs to anionic form. Hence, such an "anionic" conformation must exist in UcP, perhaps as a consequence of charge-transfer complexes between Trp-173 & Lys-174 and Trp-280 & Arg-276. Moreover, N-ethylmaleimide modification, known to induce conformational changes, prolonged the "10 ns" component, decreased quantum yield to 0.03 without changes in emission spectra, while slightly shifting absorption to red and increasing tyrosine exposure to water.
线粒体解偶联蛋白(UcP)含有两个埋藏在跨膜α-螺旋中的色氨酸:位于第四个α-螺旋基质端的Trp-173和第六个α-螺旋上的Trp-280。然而,分离出的UcP的稳态发射表现出α-螺旋不寻常的特性:最大值接近游离色氨酸发射的最大值,量子产率低至0.04。前者表明色氨酸主要与亲水性残基接触,并证实Trp-173靠近水/膜界面,Trp-280位于充满水的核苷酸结合位点腔附近。后者可能表明跨膜片段并非真正的α-螺旋。测得的去极化因子为0.6,这也表明它们存在“呼吸”现象。通过时间相关单光子计数测量UcP发射衰减,得到的成分有0.4 - 0.6纳秒、2.2 - 3纳秒和9 - 10纳秒(或者分别为0.1、1.5、4.3和12.2纳秒;或者0.1 - 0.3、1.2、3.7和10.5纳秒),与水中游离色氨酸的成分非常相似,其中最长的成分属于阴离子形式。因此,UcP中必定存在这样一种“阴离子”构象,这可能是Trp-173与Lys-174以及Trp-280与Arg-276之间电荷转移复合物的结果。此外,已知能诱导构象变化的N-乙基马来酰亚胺修饰延长了“10纳秒”成分,将量子产率降低至0.03,发射光谱无变化,同时吸收峰略微向红色偏移,酪氨酸与水的接触增加。