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Design of amphiphilic protein maquettes: Enhancing maquette functionality through binding of extremely hydrophobic cofactors to lipophilic domains

机译:两亲性蛋白质模型的设计:通过将极疏水的辅因子与亲脂性结构域结合来增强模型的功能

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We demonstrate coordination of the extremely hydrophobic 13(2)-OH-Ni-bacteriochlorophyll (Ni-BChl) to the lipophilic domain of a novel, designed amphiphilic protein maquette (AP3) dispersed in detergent micelles [Discher et al. (2005) Biochemistry 44, 12329-12343]. Sedimentation velocity and equilibrium experiments and steady-state absorption spectra indicate that Ni-BChl-AP3 is a four-helix bundle containing one Ni-BChl axially ligated by one or two histidines. The nature of the ligation was pursued with ultrafast visible spectroscopy. While it is well established that light excitation of axially ligated mono- and bisimidazole Ni-BChl in solution leads to rapid imidazole dissociation and nanosecond recombination, there is no evidence of axial ligand dissociation in the light-excited Ni-BChl-AP3. This indicates that Ni-BChl is confined within the AP3 protein, ligated to histidines with severely restricted mobility. Dissociation constants show that Ni-BChl binding to AP3 is considerably weaker than the nanomolar range usual for heme and hydrophilic (HP) maquettes; moreover, there is a tendency for the Ni-BChl-AP3 four-helix bundles to dimerize into eight-helix bundles. Nevertheless, the preparation of the Ni-BChl-AP3 four-alpha-helix maquettes, supported by time-resolved spectroscopic analysis of the nature of the ligation, provides a viable new approach to AP maquette designs that address the challenges involved in binding extremely hydrophobic cofactors.
机译:我们证明了一种非常疏水的13(2)-OH-Ni-细菌叶绿素(Ni-BChl)与分散在洗涤剂胶束中的新型,设计的两亲蛋白模型(AP3)的亲脂结构域的配位[Discher等。 (2005)Biochemistry 44,12329-12343]。沉降速度和平衡实验以及稳态吸收光谱表明,Ni-BChl-AP3是四螺旋束,其中包含一个轴向被一个或两个组氨酸连接的Ni-BChl。连接的性质是通过超快速可见光谱进行的。众所周知,溶液中轴向连接的单咪唑和联咪唑Ni-BChl的光激发会导致咪唑快速解离和纳秒重组,但是在光激发的Ni-BChl-AP3中没有轴向配体解离的迹象。这表明Ni-BChl被限制在AP3蛋白内,并与活动性受到严格限制的组氨酸连接。解离常数表明,Ni-BChl与AP3的结合要弱于血红素和亲水(HP)成型体通常的纳摩尔范围。此外,Ni-BChl-AP3四螺旋束趋向于二聚成八螺旋束。尽管如此,Ni-BChl-AP3四α-螺旋模样的制备得到了连接性质的时间分辨光谱分析的支持,为AP模样设计提供了一种可行的新方法,解决了结合疏水性极强的挑战辅助因子。

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