Specificity of Nuclear Size Scaling in Frog Erythrocytes

In eukaryotes, the cell has the ability to modulate the size of the nucleus depending on the surrounding environment, to enable nuclear functions such as DNA replication and transcription. From previous analyses of nuclear size scaling in various cell types and species, it has been found that eukary...

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Main Authors: Tetsufumi Niide, Saki Asari, Kosuke Kawabata, Yuki Hara
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-05-01
Series:Frontiers in Cell and Developmental Biology
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fcell.2022.857862/full
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author Tetsufumi Niide
Saki Asari
Kosuke Kawabata
Yuki Hara
author_facet Tetsufumi Niide
Saki Asari
Kosuke Kawabata
Yuki Hara
author_sort Tetsufumi Niide
collection DOAJ
description In eukaryotes, the cell has the ability to modulate the size of the nucleus depending on the surrounding environment, to enable nuclear functions such as DNA replication and transcription. From previous analyses of nuclear size scaling in various cell types and species, it has been found that eukaryotic cells have a conserved scaling rule, in which the nuclear size correlates with both cell size and genomic content. However, there are few studies that have focused on a certain cell type and systematically analyzed the size scaling properties in individual species (intra-species) and among species (inter-species), and thus, the difference in the scaling rules among cell types and species is not well understood. In the present study, we analyzed the size scaling relationship among three parameters, nuclear size, cell size, and genomic content, in our measured datasets of terminally differentiated erythrocytes of five Anura frogs and collected datasets of different species classes from published papers. In the datasets of isolated erythrocytes from individual frogs, we found a very weak correlation between the measured nuclear and cell cross-sectional areas. Within the erythrocytes of individual species, the correlation of the nuclear area with the cell area showed a very low hypoallometric relationship, in which the relative nuclear size decreased when the cell size increased. These scaling trends in intra-species erythrocytes are not comparable to the known general correlation in other cell types. When comparing parameters across species, the nuclear areas correlated with both cell areas and genomic contents among the five frogs and the collected datasets in each species class. However, the contribution of genomic content to nuclear size determination was smaller than that of the cell area in all species classes. In particular, the estimated degree of the contribution of genomic content was greater in the amphibian class than in other classes. Together with our imaging analysis of structural components in nuclear membranes, we hypothesized that the observed specific features in nuclear size scaling are achieved by the weak interaction of the chromatin with the nuclear membrane seen in frog erythrocytes.
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spelling doaj.art-50c8945187d04b44bcf6661e9ec705cb2022-12-22T00:37:26ZengFrontiers Media S.A.Frontiers in Cell and Developmental Biology2296-634X2022-05-011010.3389/fcell.2022.857862857862Specificity of Nuclear Size Scaling in Frog ErythrocytesTetsufumi NiideSaki AsariKosuke KawabataYuki HaraIn eukaryotes, the cell has the ability to modulate the size of the nucleus depending on the surrounding environment, to enable nuclear functions such as DNA replication and transcription. From previous analyses of nuclear size scaling in various cell types and species, it has been found that eukaryotic cells have a conserved scaling rule, in which the nuclear size correlates with both cell size and genomic content. However, there are few studies that have focused on a certain cell type and systematically analyzed the size scaling properties in individual species (intra-species) and among species (inter-species), and thus, the difference in the scaling rules among cell types and species is not well understood. In the present study, we analyzed the size scaling relationship among three parameters, nuclear size, cell size, and genomic content, in our measured datasets of terminally differentiated erythrocytes of five Anura frogs and collected datasets of different species classes from published papers. In the datasets of isolated erythrocytes from individual frogs, we found a very weak correlation between the measured nuclear and cell cross-sectional areas. Within the erythrocytes of individual species, the correlation of the nuclear area with the cell area showed a very low hypoallometric relationship, in which the relative nuclear size decreased when the cell size increased. These scaling trends in intra-species erythrocytes are not comparable to the known general correlation in other cell types. When comparing parameters across species, the nuclear areas correlated with both cell areas and genomic contents among the five frogs and the collected datasets in each species class. However, the contribution of genomic content to nuclear size determination was smaller than that of the cell area in all species classes. In particular, the estimated degree of the contribution of genomic content was greater in the amphibian class than in other classes. Together with our imaging analysis of structural components in nuclear membranes, we hypothesized that the observed specific features in nuclear size scaling are achieved by the weak interaction of the chromatin with the nuclear membrane seen in frog erythrocytes.https://www.frontiersin.org/articles/10.3389/fcell.2022.857862/fullnucleussize scalingerythrocytecell sizegenomic contentnuclear size
spellingShingle Tetsufumi Niide
Saki Asari
Kosuke Kawabata
Yuki Hara
Specificity of Nuclear Size Scaling in Frog Erythrocytes
Frontiers in Cell and Developmental Biology
nucleus
size scaling
erythrocyte
cell size
genomic content
nuclear size
title Specificity of Nuclear Size Scaling in Frog Erythrocytes
title_full Specificity of Nuclear Size Scaling in Frog Erythrocytes
title_fullStr Specificity of Nuclear Size Scaling in Frog Erythrocytes
title_full_unstemmed Specificity of Nuclear Size Scaling in Frog Erythrocytes
title_short Specificity of Nuclear Size Scaling in Frog Erythrocytes
title_sort specificity of nuclear size scaling in frog erythrocytes
topic nucleus
size scaling
erythrocyte
cell size
genomic content
nuclear size
url https://www.frontiersin.org/articles/10.3389/fcell.2022.857862/full
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AT sakiasari specificityofnuclearsizescalinginfrogerythrocytes
AT kosukekawabata specificityofnuclearsizescalinginfrogerythrocytes
AT yukihara specificityofnuclearsizescalinginfrogerythrocytes