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Progressive Pseudogenization: Vitamin C Synthesis and Its Loss in Bats

机译:渐进的假性化:蝙蝠中维生素C的合成及其损失

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摘要

For the past 50 years, it was believed that all bats, like humans and guinea pigs, did not synthesize vitamin C (Vc) because they lacked activity of L-gulonolactone oxidase (GULO) in their livers. Humans and guinea pigs lack the activity due to pseudogenization of GULO in their genomes, but there is no genetic evidence to show whether such loss in bats is caused by pseudogenization. Unexpectedly, our successful molecular cloning in one frugivorous bat (Rousettus leschenaultii) and one insectivorous bat (Hipposideros armiger) ascertains that no pseudogenization occurs in these species. Furthermore, we find normal GULO protein expression using bat-specific anti-GULO polyclonal antibodies in bats, evaluated by Western blotting. Most surprisingly, GULO activity assays reveal that these two bat species have retained the ability to synthesize Vc, but at low levels compared with the mouse. It is known that bats in the genus Pteropus have lost GULO activity. We then found that functional constraints acting on the GULO of Pteropus vampyrus (which lost its function) are relaxed. These results imply that the ability to synthesize Vc in bats has not been lost completely in species as previously thought. We also suggest that the evolution of bat GULO genes can be a good model to study genetic processes associated with loss-of-function.
机译:在过去的50年中,据信所有蝙蝠(如人类和豚鼠)都无法合成维生素C(Vc),因为它们的肝脏中缺乏L-古洛糖酸内酯氧化酶(GULO)的活性。人类和豚鼠由于基因组中GULO的假基因化而缺乏活性,但是没有遗传证据显示蝙蝠的这种损失是否是假基因化引起的。出乎意料的是,我们成功地在一只节食蝙蝠(Rousettus leschenaultii)和一只食虫蝙蝠(Hipposideros armiger)中进行了分子克隆,确定这些物种中没有假基因发生。此外,我们发现在蝙蝠中使用蝙蝠特异性抗GULO多克隆抗体,通过Western印迹评估了正常的GULO蛋白表达。最令人惊讶的是,GULO活性分析表明这两个蝙蝠物种保留了合成Vc的能力,但与小鼠相比却处于较低水平。众所周知,翼龙属的蝙蝠失去了GULO活性。然后,我们发现作用于翼龙吸血鬼GULO(失去其功能)的功能约束得到了缓解。这些结果暗示在蝙蝠中合成Vc的能力并没有像以前认为的那样完全丧失。我们还建议蝙蝠GULO基因的进化可能是研究与功能丧失相关的遗传过程的良好模型。

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