Regulation of nitrogen isotopic ratios of cellular components

This paper is an attempt to generalize the nitrogen isotope information of the molecules that make up the cell from our point of view. Nitrogen in the cell exists as 20 proteinaceous amino acids, nucleobases, hemes, chlorophylls, and others, and their composition is similar among organisms. Based on...

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Published inProgress in earth and planetary science Vol. 11; no. 1; pp. 44 - 12
Main Authors Ohkouchi, Naohiko, Isaji, Yuta, Ogawa, Nanako O.
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 01.12.2024
Springer Nature B.V
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Abstract This paper is an attempt to generalize the nitrogen isotope information of the molecules that make up the cell from our point of view. Nitrogen in the cell exists as 20 proteinaceous amino acids, nucleobases, hemes, chlorophylls, and others, and their composition is similar among organisms. Based on a physiologically simple autonomous system that maintains a balance between inputs and outputs, it is theoretically predicted that 15 N is distributed to each cellular compound with a certain regularity, and thus a specific relationship in nitrogen isotopic ratios among compounds. Previous studies essentially confirm this. The nitrogen isotopic ratio of compound i constituting the cell can be generalized as δ 15 N i  =  δ 15 N plant  +  Δ i ( TP  − 1) +  γ i , where TP represents the trophic position, and Δ i and γ i are the trophic discrimination factor and the intracellular 15 N distribution of compound i , respectively. Knowing reliable values of Δ i and γ i will help us to better understand nitrogen dynamics in the biosphere and advance our understanding of the picture of the Earth’s environment through biogeochemistry.
AbstractList Abstract This paper is an attempt to generalize the nitrogen isotope information of the molecules that make up the cell from our point of view. Nitrogen in the cell exists as 20 proteinaceous amino acids, nucleobases, hemes, chlorophylls, and others, and their composition is similar among organisms. Based on a physiologically simple autonomous system that maintains a balance between inputs and outputs, it is theoretically predicted that 15N is distributed to each cellular compound with a certain regularity, and thus a specific relationship in nitrogen isotopic ratios among compounds. Previous studies essentially confirm this. The nitrogen isotopic ratio of compound i constituting the cell can be generalized as δ 15N i  = δ 15Nplant + Δ i (TP − 1) + γ i , where TP represents the trophic position, and Δ i and γ i are the trophic discrimination factor and the intracellular 15N distribution of compound i, respectively. Knowing reliable values of Δ i and γ i will help us to better understand nitrogen dynamics in the biosphere and advance our understanding of the picture of the Earth’s environment through biogeochemistry.
This paper is an attempt to generalize the nitrogen isotope information of the molecules that make up the cell from our point of view. Nitrogen in the cell exists as 20 proteinaceous amino acids, nucleobases, hemes, chlorophylls, and others, and their composition is similar among organisms. Based on a physiologically simple autonomous system that maintains a balance between inputs and outputs, it is theoretically predicted that 15N is distributed to each cellular compound with a certain regularity, and thus a specific relationship in nitrogen isotopic ratios among compounds. Previous studies essentially confirm this. The nitrogen isotopic ratio of compound i constituting the cell can be generalized as δ15Ni = δ15Nplant + Δi (TP − 1) + γi, where TP represents the trophic position, and Δi and γi are the trophic discrimination factor and the intracellular 15N distribution of compound i, respectively. Knowing reliable values of Δi and γi will help us to better understand nitrogen dynamics in the biosphere and advance our understanding of the picture of the Earth’s environment through biogeochemistry.
This paper is an attempt to generalize the nitrogen isotope information of the molecules that make up the cell from our point of view. Nitrogen in the cell exists as 20 proteinaceous amino acids, nucleobases, hemes, chlorophylls, and others, and their composition is similar among organisms. Based on a physiologically simple autonomous system that maintains a balance between inputs and outputs, it is theoretically predicted that 15 N is distributed to each cellular compound with a certain regularity, and thus a specific relationship in nitrogen isotopic ratios among compounds. Previous studies essentially confirm this. The nitrogen isotopic ratio of compound i constituting the cell can be generalized as δ 15 N i  =  δ 15 N plant  +  Δ i ( TP  − 1) +  γ i , where TP represents the trophic position, and Δ i and γ i are the trophic discrimination factor and the intracellular 15 N distribution of compound i , respectively. Knowing reliable values of Δ i and γ i will help us to better understand nitrogen dynamics in the biosphere and advance our understanding of the picture of the Earth’s environment through biogeochemistry.
Author Ogawa, Nanako O.
Ohkouchi, Naohiko
Isaji, Yuta
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The Author(s) 2024. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
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Issue 1
Keywords Amino acids
Nitrogen isotopic ratio
Cell
Chlorophylls
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Snippet This paper is an attempt to generalize the nitrogen isotope information of the molecules that make up the cell from our point of view. Nitrogen in the cell...
Abstract This paper is an attempt to generalize the nitrogen isotope information of the molecules that make up the cell from our point of view. Nitrogen in the...
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SubjectTerms 5. Biogeosciences
Amino acids
Atmospheric Sciences
Biogeochemistry
Biogeosciences
Biosphere
Cell
Chlorophylls
Earth
Earth and Environmental Science
Earth Sciences
Geophysics/Geodesy
Hydrogeology
Isotopes and Organics
Nitrogen
Nitrogen isotopic ratio
Planetology
Research Article
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Title Regulation of nitrogen isotopic ratios of cellular components
URI https://link.springer.com/article/10.1186/s40645-024-00646-7
https://www.proquest.com/docview/3095332896
https://doaj.org/article/3de2693f90a44e6bb132bd2724a99dde
Volume 11
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