Department for Cell Biology, Philipps-Universität Marburg, Germany.
SYNMIKRO Research Center, Philipps-Universität Marburg, Germany.
Genome Biol Evol. 2019 Jun 1;11(6):1618-1629. doi: 10.1093/gbe/evz109.
Nucleomorphs are small nuclei that evolved from the nucleus of former eukaryotic endosymbionts of cryptophytes and chlorarachniophytes. These enigmatic organelles reside in their complex plastids and harbor the smallest and most compacted eukaryotic genomes investigated so far. Although the coding capacity of the nucleomorph genomes is small, a significant percentage of the encoded proteins (predicted nucleomorph-encoded proteins, pNMPs) is still not functionally annotated. We have analyzed pNMPs with unknown functions via Phyre2, a bioinformatic tool for prediction and modeling of protein structure, resulting in a functional annotation of 215 pNMPs out of 826 uncharacterized open reading frames of cryptophytes. The newly annotated proteins are predicted to participate in nucleomorph-specific functions such as chromosome organization and expression, as well as in modification and degradation of nucleomorph-encoded proteins. Additionally, we have functionally assigned nucleomorph-encoded, putatively plastid-targeted proteins among the reinvestigated pNMPs. Hints for a putative function in the periplastid compartment, the cytoplasm surrounding the nucleomorphs, emerge from the identification of pNMPs that might be homologs of endomembrane system-related proteins. These proteins are discussed in respect to their putative functions.
类核体是由隐藻和不等鞭毛类的前真核内共生体的核演变而来的小型核。这些神秘的细胞器存在于它们复杂的质体中,拥有迄今为止研究过的最小和最紧凑的真核基因组。尽管类核体基因组的编码能力较小,但仍有很大比例的编码蛋白(预测的类核编码蛋白,pNMPs)尚未具有功能注释。我们通过 Phyre2 分析了具有未知功能的 pNMPs,这是一种用于预测和建模蛋白质结构的生物信息学工具,从而对隐藻的 826 个未表征开放阅读框中的 215 个 pNMP 进行了功能注释。新注释的蛋白质被预测参与类核特有的功能,如染色体组织和表达,以及类核编码蛋白的修饰和降解。此外,我们还在重新研究的 pNMPs 中对类核编码的、推测的质体靶向蛋白进行了功能分配。从鉴定可能与内膜系统相关蛋白同源的 pNMP 中,可以看出它们在质周腔(围绕类核体的细胞质)中具有潜在功能的提示。这些蛋白质及其潜在功能将在文中进行讨论。