Institute for Advanced Biosciences, Keio University, Tsuruoka, Yamagata, 997-0017, Japan.
Systems Biology Program, Graduate School of Media and Governance, Keio University, Fujisawa, 252-0882, Japan.
J Mol Evol. 2023 Oct;91(5):669-686. doi: 10.1007/s00239-023-10128-x. Epub 2023 Aug 22.
The Clp1 family proteins, consisting of the Clp1 and Nol9/Grc3 groups, have polynucleotide kinase (PNK) activity at the 5' end of RNA strands and are important enzymes in the processing of some precursor RNAs. However, it remains unclear how this enzyme family diversified in the eukaryotes. We performed a large-scale molecular evolutionary analysis of the full-length genomes of 358 eukaryotic species to classify the diverse Clp1 family proteins. The average number of Clp1 family proteins in eukaryotes was 2.3 ± 1.0, and most representative species had both Clp1 and Nol9/Grc3 proteins, suggesting that the Clp1 and Nol9/Grc3 groups were already formed in the eukaryotic ancestor by gene duplication. We also detected an average of 4.1 ± 0.4 Clp1 family proteins in members of the protist phylum Euglenozoa. For example, in Trypanosoma brucei, there are three genes of the Clp1 group and one gene of the Nol9/Grc3 group. In the Clp1 group proteins encoded by these three genes, the C-terminal domains have been replaced by unique characteristics domains, so we designated these proteins Tb-Clp1-t1, Tb-Clp1-t2, and Tb-Clp1-t3. Experimental validation showed that only Tb-Clp1-t2 has PNK activity against RNA strands. As in this example, N-terminal and C-terminal domain replacement also contributed to the diversification of the Clp1 family proteins in other eukaryotic species. Our analysis also revealed that the Clp1 family proteins in humans and plants diversified through isoforms created by alternative splicing.
Clp1 家族蛋白由 Clp1 和 Nol9/Grc3 两个亚群组成,具有 RNA 链 5' 端的多核苷酸激酶 (PNK) 活性,是一些前体 RNA 加工的重要酶。然而,该酶家族在真核生物中是如何多样化的仍不清楚。我们对 358 种真核生物的全长基因组进行了大规模的分子进化分析,以对多样化的 Clp1 家族蛋白进行分类。真核生物中 Clp1 家族蛋白的平均数量为 2.3±1.0,大多数代表性物种都有 Clp1 和 Nol9/Grc3 蛋白,这表明 Clp1 和 Nol9/Grc3 两个亚群是在真核生物祖先通过基因复制形成的。我们还在原生动物门眼虫动物亚门的成员中检测到平均 4.1±0.4 种 Clp1 家族蛋白。例如,在布氏锥虫中,有三个 Clp1 亚群的基因和一个 Nol9/Grc3 亚群的基因。在由这三个基因编码的 Clp1 亚群蛋白中,C 端结构域已被独特的特征结构域取代,因此我们将这些蛋白命名为 Tb-Clp1-t1、Tb-Clp1-t2 和 Tb-Clp1-t3。实验验证表明,只有 Tb-Clp1-t2 对 RNA 链具有 PNK 活性。在这个例子中,N 端和 C 端结构域的替换也导致了 Clp1 家族蛋白在其他真核生物中的多样化。我们的分析还表明,人和植物的 Clp1 家族蛋白通过选择性剪接产生的同工型多样化。