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Here we review the current evidence for protein import into bacterial endosymbionts In this unsolved mystery, we briefly outline which bacteria become endosymbionts, which genes are retained in endosymbionts, and what happens to the genome and protein composition of endosymbionts. We cover both ‘recently evolved’ organelles, where there is evidence for hundreds of imported proteins, and endosymbiotic systems where currently only single protein import candidates are described.
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It was this gene transfer that generated the highly genetically integrated eukaryotic cells we know today. Here, we review these effects on one of the most ancient and diverse endosymbiotic groups, formed by—among others— legionellales, francisellaceae, and piscirickettsiaceae. Protein import into bacterial endosymbionts and evolving organellesstatus
We cover both 'recently evolved' organelles, where there is evidence for hundreds of imported proteins, and endosymbiotic systems where currently only single protein import candidates are described.
These reviews cover both the current understanding of the host processes as well as the evolutionary outcomes used by these organelles for protein targeting and translocation. The third mechanism that we have investigated in our project is protein import into bacterial cells, as a stand in for a symbiont In the two best known endosymbiotic organelles, mitochondria and chloroplasts, a majority of gene expression has moved from the symbiont to the host.