Comprehensive reduction of amino acid set in a protein suggests the importance of prebiotic amino acids for stable proteins

Abstract Modern organisms commonly use the same set of 20 genetically coded amino acids for protein synthesis with very few exceptions. However, earlier protein synthesis was plausibly much simpler than modern one and utilized only a limited set of amino acids. Nevertheless, few experimental tests o...

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Main Authors: Rei Shibue, Takahiro Sasamoto, Masami Shimada, Bowen Zhang, Akihiko Yamagishi, Satoshi Akanuma
Format: Article
Language:English
Published: Nature Publishing Group 2018-01-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-018-19561-1
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spelling doaj-27ba848811f4442eb9aeddd3bf347fd82020-12-08T05:04:12ZengNature Publishing GroupScientific Reports2045-23222018-01-01811810.1038/s41598-018-19561-1Comprehensive reduction of amino acid set in a protein suggests the importance of prebiotic amino acids for stable proteinsRei Shibue0Takahiro Sasamoto1Masami Shimada2Bowen Zhang3Akihiko Yamagishi4Satoshi Akanuma5Faculty of Human Sciences, Waseda UniversityDepartment of Applied Life Science, Tokyo University of Pharmacy and Life SciencesDepartment of Applied Life Science, Tokyo University of Pharmacy and Life SciencesFaculty of Human Sciences, Waseda UniversityDepartment of Applied Life Science, Tokyo University of Pharmacy and Life SciencesFaculty of Human Sciences, Waseda UniversityAbstract Modern organisms commonly use the same set of 20 genetically coded amino acids for protein synthesis with very few exceptions. However, earlier protein synthesis was plausibly much simpler than modern one and utilized only a limited set of amino acids. Nevertheless, few experimental tests of this issue with arbitrarily chosen amino acid sets had been reported prior to this report. Herein we comprehensively and systematically reduced the size of the amino acid set constituting an ancestral nucleoside kinase that was reconstructed in our previous study. We eventually found that two convergent sequences, each comprised of a 13-amino acid alphabet, folded into soluble, stable and catalytically active structures, even though their stabilities and activities were not as high as those of the parent protein. Notably, many but not all of the reduced-set amino acids coincide with those plausibly abundant in primitive Earth. The inconsistent amino acids appeared to be important for catalytic activity but not for stability. Therefore, our findings suggest that the prebiotically abundant amino acids were used for creating stable protein structures and other amino acids with functional side chains were recruited to achieve efficient catalysis.https://doi.org/10.1038/s41598-018-19561-1
collection DOAJ
language English
format Article
sources DOAJ
author Rei Shibue
Takahiro Sasamoto
Masami Shimada
Bowen Zhang
Akihiko Yamagishi
Satoshi Akanuma
spellingShingle Rei Shibue
Takahiro Sasamoto
Masami Shimada
Bowen Zhang
Akihiko Yamagishi
Satoshi Akanuma
Comprehensive reduction of amino acid set in a protein suggests the importance of prebiotic amino acids for stable proteins
Scientific Reports
author_facet Rei Shibue
Takahiro Sasamoto
Masami Shimada
Bowen Zhang
Akihiko Yamagishi
Satoshi Akanuma
author_sort Rei Shibue
title Comprehensive reduction of amino acid set in a protein suggests the importance of prebiotic amino acids for stable proteins
title_short Comprehensive reduction of amino acid set in a protein suggests the importance of prebiotic amino acids for stable proteins
title_full Comprehensive reduction of amino acid set in a protein suggests the importance of prebiotic amino acids for stable proteins
title_fullStr Comprehensive reduction of amino acid set in a protein suggests the importance of prebiotic amino acids for stable proteins
title_full_unstemmed Comprehensive reduction of amino acid set in a protein suggests the importance of prebiotic amino acids for stable proteins
title_sort comprehensive reduction of amino acid set in a protein suggests the importance of prebiotic amino acids for stable proteins
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2018-01-01
description Abstract Modern organisms commonly use the same set of 20 genetically coded amino acids for protein synthesis with very few exceptions. However, earlier protein synthesis was plausibly much simpler than modern one and utilized only a limited set of amino acids. Nevertheless, few experimental tests of this issue with arbitrarily chosen amino acid sets had been reported prior to this report. Herein we comprehensively and systematically reduced the size of the amino acid set constituting an ancestral nucleoside kinase that was reconstructed in our previous study. We eventually found that two convergent sequences, each comprised of a 13-amino acid alphabet, folded into soluble, stable and catalytically active structures, even though their stabilities and activities were not as high as those of the parent protein. Notably, many but not all of the reduced-set amino acids coincide with those plausibly abundant in primitive Earth. The inconsistent amino acids appeared to be important for catalytic activity but not for stability. Therefore, our findings suggest that the prebiotically abundant amino acids were used for creating stable protein structures and other amino acids with functional side chains were recruited to achieve efficient catalysis.
url https://doi.org/10.1038/s41598-018-19561-1
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