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Adaptive evolution of drug targets in producer and non-producer organisms.

机译:生产者和非生产者生物体中药物靶标的适应性进化。

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MPA (mycophenolic acid) is an immunosuppressive drug produced by several fungi in Penicillium subgenus Penicillium. This toxic metabolite is an inhibitor of IMPDH (IMP dehydrogenase). The MPA-biosynthetic cluster of Penicillium brevicompactum contains a gene encoding a B-type IMPDH, IMPDH-B, which confers MPA resistance. Surprisingly, all members of the subgenus Penicillium contain genes encoding IMPDHs of both the A and B types, regardless of their ability to produce MPA. Duplication of the IMPDH gene occurred before and independently of the acquisition of the MPAbiosynthetic cluster. Both P. brevicompactum IMPDHs are MPA-resistant, whereas the IMPDHs from a non-producer are MPA-sensitive. Resistance comes with a catalytic cost: whereas P. brevicompactum IMPDH-B is >1000-fold more resistant to MPA than a typical eukaryotic IMPDH, its kcat/Km value is 0.5% of 'normal'. Curiously, IMPDH-B of Penicillium chrysogenum, which does not produce MPA, is also a very poor enzyme. The MPA-binding site is completely conserved among sensitive and resistant IMPDHs. Mutational analysis shows that the C-terminal segment is a major structural determinant of resistance. These observations suggest that the duplication of the IMPDH gene in the subgenus Penicillium was permissive for MPA production and that MPA production created a selective pressure on IMPDH evolution. Perhaps MPA production rescued IMPDH-B from deleterious genetic drift.
机译:MPA(霉酚酸)是一种由青霉菌属青霉菌属中的几种真菌产生的免疫抑制药。该有毒代谢产物是IMPDH(IMP脱氢酶)的抑制剂。短小青霉的MPA生物合成簇包含一个编码B型IMPDH,IMPDH-B的基因,赋予MPA抗性。出人意料的是,青霉亚属的所有成员都包含编码A型和B型IMPDH的基因,无论它们产生MPA的能力如何。 IMPDH基因的重复发生在MPA生物合成簇的获得之前且与之无关。两种短小疟原虫的IMPDH均耐MPA,而非生产者的IMPDH对MPA敏感。抗药性伴随着催化成本:尽管短疫病菌IMPDH-B对MPA的抗药性比典型的真核IMPDH高1000倍以上,但其kcat / Km值为“正常”的0.5%。奇怪的是,不产生MPA的产黄青霉的IMPDH-B也是一种很差的酶。 MPA结合位点在敏感和耐药的IMPDH中完全保守。突变分析表明,C末端片段是抵抗力的主要结构决定因素。这些观察结果表明,在青霉亚属中IMPDH基因的重复允许MPA产生,并且MPA产生对IMPDH的进化产生选择性压力。也许MPA生产使IMPDH-B摆脱了有害的遗传漂移。

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