Endoplasmic reticulum expansion throughout the differentiation of teleost B cells to plasmablasts

The differentiation of B cells into antibody-secreting cells is fundamental for the generation of humoral immunity. In mammals, this process involves a series of metabolic and intracellular changes, not studied to date in teleost fish, where a clear distinction between naive B cells and plasmablasts...

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Published in:iScience Vol. 26; no. 1; p. 105854
Main Authors: Morel, Esther, Herranz-Jusdado, J. Germán, Simón, Rocío, Abós, Beatriz, Perdiguero, Pedro, Martín-Martín, Alba, Andrés, Germán, Muñoz-Atienza, Estefanía, Guerra Rodriguez, Milagros, Díaz-Rosales, Patricia, Tafalla, Carolina
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Language:English
Published: United States Elsevier Inc 20-01-2023
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Abstract The differentiation of B cells into antibody-secreting cells is fundamental for the generation of humoral immunity. In mammals, this process involves a series of metabolic and intracellular changes, not studied to date in teleost fish, where a clear distinction between naive B cells and plasmablasts/plasma cells (PCs) is still missing. Thus, in the current study, we have established that upon activation, teleost B cells undergo an expansion of the endoplasmic reticulum (ER) but experience no significant changes in mitochondria content. In parallel, the transcription of genes implicated in B cell differentiation increases, while that of mitochondrial genes decreases. In this context, ER monitoring has allowed us to distinguish between small cells with low amounts of ER (FSCloERlo B cells), that correspond to undifferentiated cells, and large cells with expanded ER (FSChiERhi B cells), characterized as plasmablasts. The results shed new light on the B cell differentiation process in teleosts and provide us with novel tools to study B cell function in these species. [Display omitted] •Fish B cells expand the ER in response to different stimuli in different tissues•Mitochondria content did not vary significantly in activated fish B cells•Transcription of mitochondrial genes decreases during fish B cell differentiation•ER monitorization allows us to differentiate fish naive B cells from plasmablasts Biological sciences; Molecular biology; Immunology
AbstractList The differentiation of B cells into antibody-secreting cells is fundamental for the generation of humoral immunity. In mammals, this process involves a series of metabolic and intracellular changes, not studied to date in teleost fish, where a clear distinction between naive B cells and plasmablasts/plasma cells (PCs) is still missing. Thus, in the current study, we have established that upon activation, teleost B cells undergo an expansion of the endoplasmic reticulum (ER) but experience no significant changes in mitochondria content. In parallel, the transcription of genes implicated in B cell differentiation increases, while that of mitochondrial genes decreases. In this context, ER monitoring has allowed us to distinguish between small cells with low amounts of ER (FSC lo ER lo B cells), that correspond to undifferentiated cells, and large cells with expanded ER (FSC hi ER hi B cells), characterized as plasmablasts. The results shed new light on the B cell differentiation process in teleosts and provide us with novel tools to study B cell function in these species. • Fish B cells expand the ER in response to different stimuli in different tissues • Mitochondria content did not vary significantly in activated fish B cells • Transcription of mitochondrial genes decreases during fish B cell differentiation • ER monitorization allows us to differentiate fish naive B cells from plasmablasts Biological sciences; Molecular biology; Immunology
The differentiation of B cells into antibody-secreting cells is fundamental for the generation of humoral immunity. In mammals, this process involves a series of metabolic and intracellular changes, not studied to date in teleost fish, where a clear distinction between naive B cells and plasmablasts/plasma cells (PCs) is still missing. Thus, in the current study, we have established that upon activation, teleost B cells undergo an expansion of the endoplasmic reticulum (ER) but experience no significant changes in mitochondria content. In parallel, the transcription of genes implicated in B cell differentiation increases, while that of mitochondrial genes decreases. In this context, ER monitoring has allowed us to distinguish between small cells with low amounts of ER (FSCloERlo B cells), that correspond to undifferentiated cells, and large cells with expanded ER (FSChiERhi B cells), characterized as plasmablasts. The results shed new light on the B cell differentiation process in teleosts and provide us with novel tools to study B cell function in these species. [Display omitted] •Fish B cells expand the ER in response to different stimuli in different tissues•Mitochondria content did not vary significantly in activated fish B cells•Transcription of mitochondrial genes decreases during fish B cell differentiation•ER monitorization allows us to differentiate fish naive B cells from plasmablasts Biological sciences; Molecular biology; Immunology
The differentiation of B cells into antibody-secreting cells is fundamental for the generation of humoral immunity. In mammals, this process involves a series of metabolic and intracellular changes, not studied to date in teleost fish, where a clear distinction between naive B cells and plasmablasts/plasma cells (PCs) is still missing. Thus, in the current study, we have established that upon activation, teleost B cells undergo an expansion of the endoplasmic reticulum (ER) but experience no significant changes in mitochondria content. In parallel, the transcription of genes implicated in B cell differentiation increases, while that of mitochondrial genes decreases. In this context, ER monitoring has allowed us to distinguish between small cells with low amounts of ER (FSC ER B cells), that correspond to undifferentiated cells, and large cells with expanded ER (FSC ER B cells), characterized as plasmablasts. The results shed new light on the B cell differentiation process in teleosts and provide us with novel tools to study B cell function in these species.
The differentiation of B cells into antibody-secreting cells is fundamental for the generation of humoral immunity. In mammals, this process involves a series of metabolic and intracellular changes, not studied to date in teleost fish, where a clear distinction between naive B cells and plasmablasts/plasma cells (PCs) is still missing. Thus, in the current study, we have established that upon activation, teleost B cells undergo an expansion of the endoplasmic reticulum (ER) but experience no significant changes in mitochondria content. In parallel, the transcription of genes implicated in B cell differentiation increases, while that of mitochondrial genes decreases. In this context, ER monitoring has allowed us to distinguish between small cells with low amounts of ER (FSCloERlo B cells), that correspond to undifferentiated cells, and large cells with expanded ER (FSChiERhi B cells), characterized as plasmablasts. The results shed new light on the B cell differentiation process in teleosts and provide us with novel tools to study B cell function in these species.
ArticleNumber 105854
Author Simón, Rocío
Perdiguero, Pedro
Muñoz-Atienza, Estefanía
Andrés, Germán
Martín-Martín, Alba
Guerra Rodriguez, Milagros
Abós, Beatriz
Herranz-Jusdado, J. Germán
Morel, Esther
Díaz-Rosales, Patricia
Tafalla, Carolina
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Keywords Molecular biology
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Snippet The differentiation of B cells into antibody-secreting cells is fundamental for the generation of humoral immunity. In mammals, this process involves a series...
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Title Endoplasmic reticulum expansion throughout the differentiation of teleost B cells to plasmablasts
URI https://dx.doi.org/10.1016/j.isci.2022.105854
https://www.ncbi.nlm.nih.gov/pubmed/36619985
https://search.proquest.com/docview/2762820747
https://pubmed.ncbi.nlm.nih.gov/PMC9812713
https://doaj.org/article/7118c8dd8539492a8d0a258addcb7405
Volume 26
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