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Functional and Structural Resilience of the Active Site Loop in the Evolution of Plasmodium Lactate Dehydrogenase

机译:活性部位环的功能和结构弹性在乳酸脱氢酶的演化中

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摘要

The malarial pathogen Plasmodium falciparum (Pf) is a member of the Apicomplexa, which independently evolved a highly specific lactate dehydrogenase (LDH) from an ancestral malate dehydrogenase (MDH) via a five-residue insertion in a key active site loop. PfLDH is widely considered an attractive drug target because of its unique active site. The conservation of the apicomplexan loop suggests that a precise insertion sequence was required for the evolution of LDH specificity. Aside from a single critical tryptophan, W107f, the functional and structural roles of residues in the loop are currently unknown. Here we show that the loop is remarkably robust to mutation, as activity is resilient to radical perturbations of both loop identity and length. Thus, alternative insertions could have evolved LDH specificity as long as they contained a tryptophan in the proper location. PfLDH likely has great potential to develop resistance to drugs designed to target its distinctive active site loop.
机译:疟疾病原体疟原虫(PF)是ApiCoMplexa的成员,其通过在关键活性部位环中通过五残基插入自然地从祖先苹果酸脱氢酶(MDH)中的高度特异性乳酸脱氢酶(LDH)。 PFLDH由于其独特的活性位点而被广泛认为是有吸引力的药物目标。 ApiCoMemplean环的保存表明LDH特异性的演化需要精确的插入序列。 除了单一关键的色氨酸,W107F,循环中残留物的功能和结构作用目前未知。 在这里,我们表明,作为循环标识和长度的激进扰动,活动对突变具有显着稳定的循环。 因此,只要它们在适当位置含有色氨酸即可,替代的插入可以具有进化的LDH特异性。 Pfldh可能具有巨大的潜力,可以促进旨在瞄准其独特的活跃场地环的药物抵抗力。

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