Switching a conflicted bacterial DTD-tRNA code is essential for the emergence of mitochondria

切换有冲突的细菌 DTD-tRNA 代码对于线粒体的出现至关重要

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作者:Jotin Gogoi, Akshay Bhatnagar, Kezia J Ann, Sambhavi Pottabathini, Raghvendra Singh, Mohd Mazeed, Santosh Kumar Kuncha, Shobha P Kruparani, Rajan Sankaranarayanan

Abstract

Mitochondria emerged through an endosymbiotic event involving a proteobacterium and an archaeal host. However, the process of optimization of cellular processes required for the successful evolution and survival of mitochondria, which integrates components from two evolutionarily distinct ancestors as well as novel eukaryotic elements, is not well understood. We identify two key switches in the translational machinery—one in the discriminator recognition code of a chiral proofreader DTD [d-aminoacyl–transfer RNA (tRNA) deacylase] and the other in mitochondrial tRNAGly—that enable the compatibility between disparate elements essential for survival. Notably, the mito-tRNAGly discriminator element is the only one to switch from pyrimidine to purine during the bacteria-to-mitochondria transition. We capture this code transition in the Jakobida, an early diverging eukaryotic clade bearing the most bacterial-like mito-genome, wherein both discriminator elements are present. This study underscores the need to explore the fundamental integration strategies critical for mitochondrial and eukaryotic evolution.

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