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Presence of the cofactor speeds up folding of Desulfovibrio desulfuricans flavodoxin

机译:辅因子的存在加快了脱硫弧菌deulfuricans flavodoxin的折叠

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摘要

Flavodoxin is an α/β protein with a noncovalently bound flavin-mononucleotide (FMN) cofactor. The apo-protein adopts a structure identical to that of the holo-form, although there is more dynamics in the FMN-binding loops. The equilibrium unfolding processes of Azotobacter vinelandii apo-flavodoxin, and Desulfovibrio desulfuricans ATCC strain 27774 apo- and holo-flavodoxins involve rather stable intermediates. In contrast, we here show that both holo- and apo-forms of flavodoxin from D. desulfuricans ATCC strain 29577 (75% sequence similarity with the strain 27774 protein) unfold in two-state equilibrium processes. Moreover, the FMN cofactor remains bound to the unfolded holo-protein. The folding and unfolding kinetics for holo-flavodoxin exhibit two-state behavior, albeit an additional slower phase is present at very low denaturant concentrations. The extrapolated folding time in water for holo-flavodoxin, ∼280 μsec, is in excellent agreement with that predicted from the protein's native-state topology. Unlike the holo-protein behavior, the folding and unfolding reactions for apo-flavodoxin are best described by two kinetic phases, with rates differing ∼15-fold, suggesting the presence of a kinetic intermediate. Both folding phases for apo-flavodoxin are orders of magnitude slower (40- and 530-fold, respectively) than that for the holo-protein. We conclude that polypeptide–cofactor interactions in the unfolded state of D. desulfuricans strain 29577 flavodoxin alter the kinetic-folding path towards two-state and speed up the folding reaction.
机译:黄素毒素是具有非共价结合的黄素单核苷酸(FMN)辅因子的α/β蛋白。载脂蛋白的结构与完整形式相同,尽管FMN结合环具有更多的动力学。葡萄固氮脱辅酶-黄酮毒素和脱硫脱硫弧菌ATCC菌株27774脱辅基和全黄酮毒素的平衡展开过程涉及相当稳定的中间体。相比之下,我们在这里显示来自脱硫尿杆菌ATCC菌株29577(与菌株27774蛋白质具有75%的序列相似性)的黄酮毒素的完整形式和脱辅基形式都处于两态平衡过程中。此外,FMN辅助因子仍然与未折叠的完整蛋白结合。全黄酮毒素的折叠和展开动力学表现出两种状态的行为,尽管在非常低的变性剂浓度下存在一个更慢的相。完整的黄素黄酮毒素在水中的外推折叠时间约为280微秒,与该蛋白质的天然状态拓扑结构预测的折叠时间非常一致。与全蛋白行为不同,脱辅基黄酮毒素的折叠和解折叠反应最好用两个动力学相来描述,速率相差约15倍,表明存在动力学中间体。载脂黄素毒素的两个折叠阶段都比完整蛋白慢两个数量级(分别是40倍和530倍)。我们得出的结论是,脱硫葡萄球菌29577黄酮毒素的未折叠状态下多肽与辅因子的相互作用改变了朝着两个状态的动力学折叠路径,并加快了折叠反应。

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