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Proteomic distinction between humans and great apes based on plasma transthyretin microheterogeneity

机译:蛋白质组学人类和伟大之间的区别基于等离子体转体基因猿微观不均一性

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Although humans and their closest relative, the chimpanzee are 98.5% identical in their DNA sequences, they differ in morphologic, behavioural and cognitive aspects. Recent studies imply observed differences in transthyretin (TTR) as a unique feature in human evolution. We studied differences in the molecular heterogeneity of plasma TTR between humans and great apes (chimpanzee, bonobo, gorilla, orang-utan) using a mass spectrometry immunoassay. Compared to humans, TTR levels were higher in chimpanzees and lower in orang-utans (both P < 0.05). In all species, four major mass signals were observed. In humans, mass signals were at 13,755 ± 4, 13,875 ± 4 (greatest intensity), 13,935 ± 8 and 14,053 ± 10 Da representing native, S-cysteinylated, S-cysteinglycinylated and glutathionylated TTR, respectively. In chimpanzees and bonobos molecular masses were slightly lower than in humans (7–8 Da), whilst in gorillas and orang-utans masses of TTR adducts were respectively 20 and 100 Da lower (P < 0.05). Peak pattern and relationship to each other was similar in all species. The close relationship between humans and chimpanzees is reflected in the similarity of their post-translational modification of TTR whilst mutations on the amino acid level are indicated. Results represent a proteomic distinction between humans and great apes with the possibility of resulting functional consequences.
机译:尽管人类和他们最亲密的亲戚,黑猩猩是98.5%相同的DNA序列,它们在形态不同,行为和认知方面。意味着观察转体基因的差异(竞技场队伍)作为一个独特的特性在人类进化。研究不同的分子等离子体的人类和竞技场队伍的异质性大猿(黑猩猩、倭黑猩猩、大猩猩猩猩)使用质谱免疫测定。在黑猩猩和猩猩的低(P < 0.05)。观察信号。在13755±13875±4(最大强度),13935±8和14053±10哒表示本地、S-cysteinylatedS-cysteinglycinylated和glutathionylated竞技场队伍,分别。分子质量略低于在大猩猩和人类(7 - 8 Da),同时红毛猩猩的竞技场队伍加合物的质量分别为20和100 Da降低(P < 0.05)。模式和相互关系所有物种相似。反映在人类和黑猩猩之间翻译后的相似性修改的竞技场队伍同时突变氨基酸酸水平表示。蛋白质组学人类和伟大之间的区别猿与功能结果的可能性的后果。

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