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 |
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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 |
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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 |
Author_xml | – sequence: 1 givenname: Esther surname: Morel fullname: Morel, Esther organization: Animal Health Research Center (CISA-INIA), Valdeolmos, Madrid 28130, Spain – sequence: 2 givenname: J. Germán surname: Herranz-Jusdado fullname: Herranz-Jusdado, J. Germán organization: Animal Health Research Center (CISA-INIA), Valdeolmos, Madrid 28130, Spain – sequence: 3 givenname: Rocío surname: Simón fullname: Simón, Rocío organization: Animal Health Research Center (CISA-INIA), Valdeolmos, Madrid 28130, Spain – sequence: 4 givenname: Beatriz surname: Abós fullname: Abós, Beatriz organization: Animal Health Research Center (CISA-INIA), Valdeolmos, Madrid 28130, Spain – sequence: 5 givenname: Pedro surname: Perdiguero fullname: Perdiguero, Pedro organization: Animal Health Research Center (CISA-INIA), Valdeolmos, Madrid 28130, Spain – sequence: 6 givenname: Alba surname: Martín-Martín fullname: Martín-Martín, Alba organization: Animal Health Research Center (CISA-INIA), Valdeolmos, Madrid 28130, Spain – sequence: 7 givenname: Germán surname: Andrés fullname: Andrés, Germán organization: Animal Health Research Center (CISA-INIA), Valdeolmos, Madrid 28130, Spain – sequence: 8 givenname: Estefanía surname: Muñoz-Atienza fullname: Muñoz-Atienza, Estefanía organization: Veterinary Faculty, Complutense University of Madrid (UCM), Madrid 28040, Spain – sequence: 9 givenname: Milagros surname: Guerra Rodriguez fullname: Guerra Rodriguez, Milagros organization: Centre for Molecular Biology Severo Ochoa (CBMSO), Madrid 28049, Spain – sequence: 10 givenname: Patricia surname: Díaz-Rosales fullname: Díaz-Rosales, Patricia organization: Animal Health Research Center (CISA-INIA), Valdeolmos, Madrid 28130, Spain – sequence: 11 givenname: Carolina surname: Tafalla fullname: Tafalla, Carolina email: tafalla@inia.csic.es organization: Animal Health Research Center (CISA-INIA), Valdeolmos, Madrid 28130, Spain |
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