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Published on: May 27, 2021
Differential endocytotic characteristics of a novel human B/DC cell line HBM-Noda: effective macropinocytic and
I Torii1, S Morikawa, M Nagasaki
1Department of Pathology 1st Unit, Shimane Medical University, Izumo, Japan. ikuko@shimane-med.ac.jp
Insights
A novel human B cell-lineage dendritic cell (B/DC) line efficiently phagocytoses antigens. This unique dendritic cell (DC) subtype utilizes membrane ruffling for antigen uptake, playing a key role in immune responses.
Area of Science:
- Immunology
- Cell Biology
- Hematology
Background:
- Dendritic cells (DCs) are crucial antigen-presenting cells (APCs) in the immune system.
- Characterizing novel DC subtypes is essential for understanding immune regulation.
- The endocytic mechanisms of DCs influence their APC function.
Purpose of the Study:
- To characterize a novel human B cell-lineage dendritic cell (B/DC) line, HBM-Noda.
- To compare the endocytic capacities (micropinocytosis, macropinocytosis, phagocytosis) of the B/DC line with macrophage (Mphi) cell lines.
- To elucidate the role of this B/DC line in antigen presentation and immune response.
Main Methods:
- Flow cytometry and immunocytochemistry were used to analyze cell markers.
- Endocytosis was assessed by comparing micropinocytosis, macropinocytosis, and phagocytosis.
- Functional assays included T cell stimulation, immunoglobulin G production, and immunoglobulin gene rearrangement.
Main Results:
- The HBM-Noda line expresses both DC and B-cell associated markers, identifying it as a B/DC line.
- Noda exhibited significantly lower micropinocytosis and macropinocytosis compared to Mphi cell lines.
- Noda demonstrated more efficient phagocytosis of opsonized sheep red blood cells (SRBCs) than Mphi cell lines.
Conclusions:
- A unique human B/DC subtype, originating from a lymphoid differentiation pathway, has been identified in bone marrow.
- This B/DC lineage plays a significant role in host immune response through effective antigen uptake via membrane ruffling and surface receptors.
- The distinct endocytic profile, particularly efficient phagocytosis, highlights the specialized function of this B/DC subtype.
Abstract:
In order to characterize a novel human B cell-lineage dendritic cell line (B/DC line) as an antigen-presenting cell (APC), we compared three types of endocytosis (micropinocytosis via a clathrin-coated pit, macropinocytosis via membrane ruffling, and phagocytosis) among myeloid-related, macrophage (Mphi) cell lines and a B/DC line. In the present examination, we used a unique human dendritic cell (DC) line, HBM-Noda (Noda). Flow cytometric and immunocytochemical analyses revealed that Noda not only expresses some DC markers, but also it expresses some B-cell associated markers. Noda shows strong capacities to stimulate allogenic T cells, to produce immunoglobulin G (IgG), and to perform immunoglobulin gene rearrangement. These data strongly suggest that Noda is a B-cell lineage DC line. The endocytic differences among these cell lines were as follows. (1) The level of micropinocytosis of Noda was significantly less than that of conventional human Mphi cell lines, and the formation of a clathrin-coated pit was not observed in Noda. (2) The level of macropinocytosis of Noda was also smaller than that of conventional Mphi cells indicating that the active membrane ruffling of Noda induces rapid recycling. (3) Phagocytosis of opsonized sheep red blood cells (SRBC) was performed more efficiently in Noda than in other Mphi cell lines. Collectively, these data suggest that in human bone marrow cells, we can identify a unique DC subtype, B/DC line, which develops through a lymphoid DC-differentiation pathway, and DC in this lineage plays an important role in the host immune response because of its effective uptake of a variety of size of antigens by using the skillful membrane ruffling and surface receptors
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