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真核生物膜内在蛋白(MIPs)的早期多样化。

Early Diversification of Membrane Intrinsic Proteins (MIPs) in Eukaryotes.

机构信息

Department of Applied Bioinformatics, University of Goettingen, Institute for Microbiology and Genetics, 37077 Göttingen, Germany.

Campus Institute Data Science (CIDAS), 37077 Göttingen, Germany.

出版信息

Genome Biol Evol. 2024 Aug 5;16(8). doi: 10.1093/gbe/evae164.

Abstract

Membrane intrinsic proteins (MIPs), including aquaporins (AQPs) and aquaglyceroporins (GLPs), form an ancient family of transporters for water and small solutes across biological membranes. The evolutionary history and functions of MIPs have been extensively studied in vertebrates and land plants, but their widespread presence across the eukaryotic tree of life suggests both a more complex evolutionary history and a broader set of functions than previously thought. That said, the early evolution of MIPs remains obscure. The presence of one GLP and four AQP clades across both bacteria and archaea suggests that the first eukaryotes could have possessed up to five MIPs. Here, we report on a previously unknown richness in MIP diversity across all major eukaryotic lineages, including unicellular eukaryotes, which make up the bulk of eukaryotic diversity. Three MIP clades have likely deep evolutionary origins, dating back to the last eukaryotic common ancestor (LECA), and support the presence of a complex MIP repertoire in early eukaryotes. Overall, our findings highlight the growing complexity of the reconstructed LECA genome: the dynamic evolutionary history of MIPs was set in motion when eukaryotes were in their infancy followed by radiative bursts across all main eukaryotic lineages.

摘要

膜内在蛋白(MIPs)包括水通道蛋白(AQPs)和甘油通道蛋白(GLPs),是一类古老的跨生物膜转运蛋白家族,可转运水和小分子溶质。MIPs 的进化历史和功能在脊椎动物和陆地植物中得到了广泛研究,但它们在真核生物进化树上的广泛存在表明,它们的进化历史比以前认为的更为复杂,功能也更为广泛。尽管如此,MIP 的早期进化仍然不为人知。细菌和古菌中存在一个 GLP 和四个 AQP 分支,这表明最初的真核生物可能拥有多达 5 种 MIP。在这里,我们报告了在所有主要的真核生物谱系中,包括构成真核生物多样性大部分的单细胞真核生物,MIP 多样性的丰富程度以前是未知的。三个 MIP 分支可能具有深远的进化起源,可以追溯到最后一个真核生物共同祖先(LECA),并支持早期真核生物中存在复杂的 MIP 谱。总的来说,我们的研究结果强调了重建的 LECA 基因组的复杂性不断增加:当真核生物处于萌芽状态时,MIP 的动态进化历史就开始了,随后在所有主要的真核生物谱系中都出现了辐射爆发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a4b/11316224/ecce01861e59/evae164f1.jpg

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