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Evolutionary bridges to new protein folds: design of C-terminal Cro protein chameleon sequences

机译:进化通往新蛋白质折叠的桥梁:C末端Cro蛋白质变色龙序列的设计

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摘要

Regions of amino-acid sequence that are compatible with multiple folds may facilitate evolutionary transitions in protein structure. In a previous study, we described a heuristically designed chameleon sequence (SASF1, structurally ambivalent sequence fragment 1) that could adopt either of two naturally occurring conformations (α-helical or β-sheet) when incorporated as part of the C-terminal dimerization subdomain of two structurally divergent transcription factors, P22 Cro and λ Cro. Here we describe longer chameleon designs (SASF2 and SASF3) that in the case of SASF3 correspond to the full C-terminal half of the ordered region of a P22 Cro/λ Cro sequence alignment (residues 34–57). P22-SASF2 and λWDD-SASF2 show moderate thermal stability in denaturation curves monitored by circular dichroism (Tm values of 46 and 55°C, respectively), while P22-SASF3 and λWDD-SASF3 have somewhat reduced stability (Tm values of 33 and 49°C, respectively). 13C and 1H NMR secondary chemical shift analysis confirms two C-terminal α-helices for P22-SASF2 (residues 36–45 and 54–57) and two C-terminal β-strands for λWDD>-SASF2 (residues 40–45 and 50–52), corresponding to secondary structure locations in the two parent sequences. Backbone relaxation data show that both chameleon sequences have a relatively well-ordered structure. Comparisons of 15N-1H correlation spectra for SASF2 and SASF3-containing proteins strongly suggest that SASF3 retains the chameleonism of SASF2. Both Cro C-terminal conformations can be encoded in a single sequence, showing the plausibility of linking different Cro folds by smooth evolutionary transitions. The N-terminal subdomain, though largely conserved in structure, also exerts an important contextual influence on the structure of the C-terminal region.
机译:与多个折叠相容的氨基酸序列区域可以促进蛋白质结构的进化转变。在先前的研究中,我们描述了一种启发式设计的变色龙序列(SASF1,结构上矛盾的序列片段1),当将其作为C端二聚化子域的一部分并入时,可以采用两种天然存在的构象(α螺旋或β折叠)两个结构不同的转录因子P22 Cro和λCro的序列。在这里,我们描述了更长的变色龙设计(SASF2和SASF3),在SASF3的情况下,它们对应于P22 Cro /λCro序列比对(残基34-57)的有序区域的完整C端一半。 P22-SASF2和λWDD-SASF2在通过圆二色性监测的变性曲线中显示出适度的热稳定性(Tm值分别为46和55°C),而P22-SASF3和λWDD-SASF3的稳定性有所降低(Tm值分别为33和49) °C)。 13 C和 1 H NMR二次化学位移分析确定了P22-SASF2的两个C末端α-螺旋(残基36-45和54-57)和两个C- λWDD>- SASF2的末端β链(残基40–45和50–52),对应于两个亲本序列中的二级结构位置。骨干弛豫数据表明,两个变色龙序列都具有相对有序的结构。比较SASF2和含有SASF3的蛋白质的 15 N- 1 H相关光谱,有力地证明了SASF3保留了SASF2的变色作用。两个Cro C-末端构象都可以在单个序列中编码,显示通过平滑的进化转变连接不同的Cro折叠的合理性。 N-末端亚结构域虽然在结构上非常保守,但对C-末端区域的结构也具有重要的背景影响。

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