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基于计算机预测无终止内变形虫(一种遗传密码非典型的动质体)的代谢途径。

In silico prediction of the metabolism of Blastocrithidia nonstop, a trypanosomatid with non-canonical genetic code.

机构信息

de Duve Institute, Université catholique de Louvain, Brussels, Belgium.

Life Science Research Centre, Faculty of Science, University of Ostrava, Ostrava, Czechia.

出版信息

BMC Genomics. 2024 Feb 16;25(1):184. doi: 10.1186/s12864-024-10094-8.

Abstract

BACKGROUND

Almost all extant organisms use the same, so-called canonical, genetic code with departures from it being very rare. Even more exceptional are the instances when a eukaryote with non-canonical code can be easily cultivated and has its whole genome and transcriptome sequenced. This is the case of Blastocrithidia nonstop, a trypanosomatid flagellate that reassigned all three stop codons to encode amino acids.

RESULTS

We in silico predicted the metabolism of B. nonstop and compared it with that of the well-studied human parasites Trypanosoma brucei and Leishmania major. The mapped mitochondrial, glycosomal and cytosolic metabolism contains all typical features of these diverse and important parasites. We also provided experimental validation for some of the predicted observations, concerning, specifically presence of glycosomes, cellular respiration, and assembly of the respiratory complexes.

CONCLUSIONS

In an unusual comparison of metabolism between a parasitic protist with a massively altered genetic code and its close relatives that rely on a canonical code we showed that the dramatic differences on the level of nucleic acids do not seem to be reflected in the metabolisms. Moreover, although the genome of B. nonstop is extremely AT-rich, we could not find any alterations of its pyrimidine synthesis pathway when compared to other trypanosomatids. Hence, we conclude that the dramatic alteration of the genetic code of B. nonstop has no significant repercussions on the metabolism of this flagellate.

摘要

背景

几乎所有现存的生物都使用相同的、所谓的标准遗传密码,而偏离这种密码的情况非常罕见。更特殊的情况是,当一个具有非标准密码的真核生物可以很容易地被培养并且其整个基因组和转录组都被测序时。这就是 Blastocrithidia nonstop 的情况,一种重新分配了所有三个终止密码子以编码氨基酸的鞭毛原生动物。

结果

我们在计算机上预测了 B. nonstop 的代谢,并将其与研究得很好的人类寄生虫 Trypanosoma brucei 和 Leishmania major 的代谢进行了比较。映射的线粒体、糖体和细胞质代谢包含了这些多样化和重要寄生虫的所有典型特征。我们还提供了一些预测观察结果的实验验证,特别是糖体的存在、细胞呼吸和呼吸复合物的组装。

结论

在对一个遗传密码发生巨大改变的寄生原生动物与其依赖标准密码的近亲之间的代谢进行不寻常的比较中,我们表明,在核酸水平上的巨大差异似乎并没有反映在代谢中。此外,尽管 B. nonstop 的基因组 AT 含量极高,但与其他鞭毛原生动物相比,我们没有发现嘧啶合成途径的任何改变。因此,我们得出结论,B. nonstop 遗传密码的剧烈改变对这种鞭毛原生动物的代谢没有重大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06cd/10874023/48cb30e992b6/12864_2024_10094_Fig1_HTML.jpg

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