Aubusson-Fleury Anne, Balavoine Guillaume, Lemullois Michel, Bouhouche Khaled, Beisson Janine, Koll France
Institute for Integrative Biology of the Cell (I2BC), Cell Biology Department, CEA, CNRS, Université Paris Sud, Université Paris-Saclay, 1 Avenue de la Terrasse, Gif sur Yvette 91198, France
Institut Jacques Monod, Evolution and development of Metazoa, UMR 7592, CNRS/Université Paris Diderot, 15 rue Hélène Brion, Paris 75013, France.
Biol Open. 2017 Jun 15;6(6):765-776. doi: 10.1242/bio.024273.
First discovered in unicellular eukaryotes, centrins play crucial roles in basal body duplication and anchoring mechanisms. While the evolutionary status of the founding members of the family, Centrin2/Vfl2 and Centrin3/cdc31 has long been investigated, the evolutionary origin of other members of the family has received less attention. Using a phylogeny of ciliate centrins, we identify two other centrin families, the ciliary centrins and the centrins present in the contractile filaments (ICL centrins). In this paper, we carry on the functional analysis of still not well-known centrins, the ICL1e subfamily identified in , and show their requirement for correct basal body anchoring through interactions with Centrin2 and Centrin3. Using as well as a eukaryote-wide sampling of centrins from completely sequenced genomes, we revisited the evolutionary story of centrins. Their phylogeny shows that the centrins associated with the ciliate contractile filaments are widespread in eukaryotic lineages and could be as ancient as Centrin2 and Centrin3.
中心蛋白最初是在单细胞真核生物中发现的,在基体复制和锚定机制中发挥着关键作用。虽然该家族的创始成员中心蛋白2/Vfl2和中心蛋白3/cdc31的进化地位长期以来一直受到研究,但该家族其他成员的进化起源却较少受到关注。通过纤毛虫中心蛋白的系统发育分析,我们鉴定出另外两个中心蛋白家族,即纤毛中心蛋白和存在于收缩丝中的中心蛋白(ICL中心蛋白)。在本文中,我们对仍不太知名的中心蛋白(在[具体文献]中鉴定出的ICL1e亚家族)进行了功能分析,并表明它们通过与中心蛋白2和中心蛋白3相互作用来实现正确的基体锚定。利用[具体文献]以及来自完全测序基因组的真核生物范围内的中心蛋白样本,我们重新审视了中心蛋白的进化历程。它们的系统发育表明,与纤毛虫收缩丝相关的中心蛋白在真核生物谱系中广泛存在,并且可能与中心蛋白2和中心蛋白3一样古老。