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  1.  5
    Eukaryotic cellular intricacies shape mitochondrial proteomic complexity.Michael Hammond, Richard G. Dorrell, Dave Speijer & Julius Lukeš - 2022 - Bioessays 44 (5):2100258.
    Mitochondria have been fundamental to the eco‐physiological success of eukaryotes since the last eukaryotic common ancestor (LECA). They contribute essential functions to eukaryotic cells, above and beyond classical respiration. Mitochondria interact with, and complement, metabolic pathways occurring in other organelles, notably diversifying the chloroplast metabolism of photosynthetic organisms. Here, we integrate existing literature to investigate how mitochondrial metabolism varies across the landscape of eukaryotic evolution. We illustrate the mitochondrial remodelling and proteomic changes undergone in conjunction with major evolutionary transitions. We (...)
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  2.  44
    Comment on “Does constructive neutral evolution play an important role in the origin of cellular complexity?”. [REVIEW]W. Ford Doolittle, Julius Lukeš, John M. Archibald, Patrick J. Keeling & Michael W. Gray - 2011 - Bioessays 33 (6):427-429.
  3.  18
    Comment on “Does constructive neutral evolution play an important role in the origin of cellular complexity?” DOI 10.1002/bies.201100010. [REVIEW]W. Ford Doolittle, Julius Lukeš, John M. Archibald, Patrick J. Keeling & Michael W. Gray - 2011 - Bioessays 33 (6):427-429.