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Exceptional Evolutionary Divergence of Human Muscle and Brain Metabolomes Parallels Human Cognitive and Physical Uniqueness

Metabolite concentrations reflect the physiological states of tissues and cells. However, the role of metabolic changes in species evolution is currently unknown. Here, we present a study of metabolome evolution conducted in three brain regions and two non-neural tissues from humans, chimpanzees, ma...

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Autores principales: Bozek, Katarzyna, Wei, Yuning, Yan, Zheng, Liu, Xiling, Xiong, Jieyi, Sugimoto, Masahiro, Tomita, Masaru, Pääbo, Svante, Pieszek, Raik, Sherwood, Chet C., Hof, Patrick R., Ely, John J., Steinhauser, Dirk, Willmitzer, Lothar, Bangsbo, Jens, Hansson, Ola, Call, Josep, Giavalisco, Patrick, Khaitovich, Philipp
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4035273/
https://www.ncbi.nlm.nih.gov/pubmed/24866127
http://dx.doi.org/10.1371/journal.pbio.1001871
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author Bozek, Katarzyna
Wei, Yuning
Yan, Zheng
Liu, Xiling
Xiong, Jieyi
Sugimoto, Masahiro
Tomita, Masaru
Pääbo, Svante
Pieszek, Raik
Sherwood, Chet C.
Hof, Patrick R.
Ely, John J.
Steinhauser, Dirk
Willmitzer, Lothar
Bangsbo, Jens
Hansson, Ola
Call, Josep
Giavalisco, Patrick
Khaitovich, Philipp
author_facet Bozek, Katarzyna
Wei, Yuning
Yan, Zheng
Liu, Xiling
Xiong, Jieyi
Sugimoto, Masahiro
Tomita, Masaru
Pääbo, Svante
Pieszek, Raik
Sherwood, Chet C.
Hof, Patrick R.
Ely, John J.
Steinhauser, Dirk
Willmitzer, Lothar
Bangsbo, Jens
Hansson, Ola
Call, Josep
Giavalisco, Patrick
Khaitovich, Philipp
author_sort Bozek, Katarzyna
collection PubMed
description Metabolite concentrations reflect the physiological states of tissues and cells. However, the role of metabolic changes in species evolution is currently unknown. Here, we present a study of metabolome evolution conducted in three brain regions and two non-neural tissues from humans, chimpanzees, macaque monkeys, and mice based on over 10,000 hydrophilic compounds. While chimpanzee, macaque, and mouse metabolomes diverge following the genetic distances among species, we detect remarkable acceleration of metabolome evolution in human prefrontal cortex and skeletal muscle affecting neural and energy metabolism pathways. These metabolic changes could not be attributed to environmental conditions and were confirmed against the expression of their corresponding enzymes. We further conducted muscle strength tests in humans, chimpanzees, and macaques. The results suggest that, while humans are characterized by superior cognition, their muscular performance might be markedly inferior to that of chimpanzees and macaque monkeys.
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spelling pubmed-40352732014-06-02 Exceptional Evolutionary Divergence of Human Muscle and Brain Metabolomes Parallels Human Cognitive and Physical Uniqueness Bozek, Katarzyna Wei, Yuning Yan, Zheng Liu, Xiling Xiong, Jieyi Sugimoto, Masahiro Tomita, Masaru Pääbo, Svante Pieszek, Raik Sherwood, Chet C. Hof, Patrick R. Ely, John J. Steinhauser, Dirk Willmitzer, Lothar Bangsbo, Jens Hansson, Ola Call, Josep Giavalisco, Patrick Khaitovich, Philipp PLoS Biol Research Article Metabolite concentrations reflect the physiological states of tissues and cells. However, the role of metabolic changes in species evolution is currently unknown. Here, we present a study of metabolome evolution conducted in three brain regions and two non-neural tissues from humans, chimpanzees, macaque monkeys, and mice based on over 10,000 hydrophilic compounds. While chimpanzee, macaque, and mouse metabolomes diverge following the genetic distances among species, we detect remarkable acceleration of metabolome evolution in human prefrontal cortex and skeletal muscle affecting neural and energy metabolism pathways. These metabolic changes could not be attributed to environmental conditions and were confirmed against the expression of their corresponding enzymes. We further conducted muscle strength tests in humans, chimpanzees, and macaques. The results suggest that, while humans are characterized by superior cognition, their muscular performance might be markedly inferior to that of chimpanzees and macaque monkeys. Public Library of Science 2014-05-27 /pmc/articles/PMC4035273/ /pubmed/24866127 http://dx.doi.org/10.1371/journal.pbio.1001871 Text en © 2014 Bozek et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bozek, Katarzyna
Wei, Yuning
Yan, Zheng
Liu, Xiling
Xiong, Jieyi
Sugimoto, Masahiro
Tomita, Masaru
Pääbo, Svante
Pieszek, Raik
Sherwood, Chet C.
Hof, Patrick R.
Ely, John J.
Steinhauser, Dirk
Willmitzer, Lothar
Bangsbo, Jens
Hansson, Ola
Call, Josep
Giavalisco, Patrick
Khaitovich, Philipp
Exceptional Evolutionary Divergence of Human Muscle and Brain Metabolomes Parallels Human Cognitive and Physical Uniqueness
title Exceptional Evolutionary Divergence of Human Muscle and Brain Metabolomes Parallels Human Cognitive and Physical Uniqueness
title_full Exceptional Evolutionary Divergence of Human Muscle and Brain Metabolomes Parallels Human Cognitive and Physical Uniqueness
title_fullStr Exceptional Evolutionary Divergence of Human Muscle and Brain Metabolomes Parallels Human Cognitive and Physical Uniqueness
title_full_unstemmed Exceptional Evolutionary Divergence of Human Muscle and Brain Metabolomes Parallels Human Cognitive and Physical Uniqueness
title_short Exceptional Evolutionary Divergence of Human Muscle and Brain Metabolomes Parallels Human Cognitive and Physical Uniqueness
title_sort exceptional evolutionary divergence of human muscle and brain metabolomes parallels human cognitive and physical uniqueness
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4035273/
https://www.ncbi.nlm.nih.gov/pubmed/24866127
http://dx.doi.org/10.1371/journal.pbio.1001871
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