Apoptotic Factors Are Evolutionarily Conserved Since Mitochondrial Domestication

Author:

Kaushal Vandana1ORCID,Klim Joanna1,Skoneczna Adrianna1,Kurlandzka Anna1,Enkhbaatar Tuguldur1,Kaczanowski Szymon1ORCID,Zielenkiewicz Urszula1

Affiliation:

1. Institute of Biochemistry and Biophysics PAS , Pawinskiego 5a, 02-106 Warszawa , Poland

Abstract

Abstract The mechanisms initiating apoptotic programmed cell death in diverse eukaryotes are very similar. Basically, the mitochondrial permeability transition activates apoptotic proteases, DNases, and flavoproteins such as apoptosis-inducing factors (AIFs). According to the hypothesis of the endosymbiotic origin of apoptosis, these mechanisms evolved during mitochondrial domestication. Various phylogenetic analyses, including ours, have suggested that apoptotic factors were eubacterial protomitochondrial toxins used for killing protoeukaryotic hosts. Here, we tested whether the function of yeast Saccharomyces cerevisiae apoptotic proteases (metacaspases Mca1 and Nma111), DNase Nuc1, and flavoprotein Ndi1 can be substituted with orthologs from remotely related eukaryotes such as plants, protists, and eubacteria. We found that orthologs of remotely related eukaryotic and even eubacterial proteins can initiate apoptosis in yeast when triggered by chemical stresses. This observation suggests that apoptotic mechanisms have been maintained since mitochondrial domestication, which occurred approximately 1,800 Mya. Additionally, it supports the hypothesis that some of these apoptotic factors could be modified eubacterial toxins.

Funder

Polish National Science Centre

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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