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高活性的精氨酸39突变为赖氨酸的记忆蛋白:带正电残基在生色团结合腔中的作用

Hyperactive Arg39Lys mutated mnemiopsin: implication of positively charged residue in chromophore binding cavity.

作者信息

Mahdavi Atiyeh, Sajedi Reza H, Hosseinkhani Saman, Taghdir Majid

机构信息

Department of Biological Sciences, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan 45195-1159, Iran.

出版信息

Photochem Photobiol Sci. 2015 Apr;14(4):792-800. doi: 10.1039/c4pp00191e.

Abstract

Mnemiopsin, a Ca(2+)-regulated photoprotein isolated from Mnemiopsis leidyi, belongs to the family of ctenophore photoproteins. These proteins emit blue light from a chromophore, which is tightly but non-covalently bound in their central hydrophobic core that contains 21 conserved residues. In an effort to investigate the role of Arg39 (the sole charged residue in coelenterazine binding cavity of ctenophore photoproteins) in bioluminescence properties of these photoproteins, three mutated forms of mnemiopsin 1 (R39E, R39K and R39M) were constructed and characterized. The results indicate that while the luminescence activity of R39K mutated mnemiopsin has increased about nine fold compared to the wild type, R39M and R39E mutated mnemiopsins have entirely lost their activities. The most distinguished properties of R39K mutated photoprotein are its high activity, slow rate of luminescence decay and broad pH profile compared to the wild type. The complete loss of bioluminescence activity in mutated photoproteins with negatively charged and aliphatic residues (R39E and R39M, respectively) shows that the presence of a positively charged residue at this position is necessary. The results of spectroscopic studies, including CD, intrinsic and extrinsic fluorescence measurements and acrylamide quenching studies show that, while the substitutions lead to structural rigidity in R39E and R39M mutated mnemiopsins, structural flexibility is obvious in R39K mutated mnemiopsin. The presence of a more localized positive charge on ε-amino group of Lys compared to guanidinium group of Arg residue in close proximity to the choromophre might affect its fixation in the binding cavity and result in increased bioluminescence activity in this mutated photoprotein. It appears that the polarity and flexibility of positively charged residue at this position finely tunes the luminescence properties of ctenophore photoproteins.

摘要

海胡桃视蛋白是一种从海胡桃中分离出来的受Ca(2+)调节的光蛋白,属于栉水母光蛋白家族。这些蛋白通过一种发色团发出蓝光,该发色团紧密但非共价地结合在其中心疏水核心中,该核心包含21个保守残基。为了研究精氨酸39(栉水母光蛋白腔肠素结合腔中的唯一带电荷残基)在这些光蛋白生物发光特性中的作用,构建并表征了三种海胡桃视蛋白1的突变形式(R39E、R39K和R39M)。结果表明,与野生型相比,R39K突变的海胡桃视蛋白的发光活性增加了约九倍,而R39M和R39E突变的海胡桃视蛋白则完全丧失了活性。与野生型相比,R39K突变光蛋白最显著的特性是其高活性、缓慢的发光衰减速率和较宽的pH范围。带负电荷和脂肪族残基的突变光蛋白(分别为R39E和R39M)生物发光活性的完全丧失表明该位置存在带正电荷的残基是必要的。包括圆二色性、内在和外在荧光测量以及丙烯酰胺猝灭研究在内的光谱学研究结果表明,虽然这些取代导致R39E和R39M突变的海胡桃视蛋白结构刚性增加,但R39K突变的海胡桃视蛋白结构灵活性明显。与靠近发色团的精氨酸残基的胍基相比,赖氨酸ε-氨基上存在更局部化的正电荷可能会影响其在结合腔中的固定,并导致该突变光蛋白生物发光活性增加。看来该位置带正电荷残基的极性和灵活性精细地调节了栉水母光蛋白的发光特性。

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