NADPH oxidase activation regulates apoptotic neutrophil clearance by murine macrophages

Publication Date:
2018-05-25
Publisher:
American Society of Hematology (ASH)
Print ISSN:
0006-4971
Electronic ISSN:
1528-0020
Topics:
Biology
Medicine
Keywords:
Phagocytes, Granulocytes, and Myelopoiesis
Published by:
_version_ 1836398942044028928
autor Bagaitkar, J., Huang, J., Zeng, M. Y., Pech, N. K., Monlish, D. A., Perez-Zapata, L. J., Miralda, I., Schuettpelz, L. G., Dinauer, M. C.
beschreibung The phagocyte reduced NAD phosphate (NADPH) oxidase generates superoxide, the precursor to reactive oxygen species (ROS) that has both antimicrobial and immunoregulatory functions. Inactivating mutations in NADPH oxidase alleles cause chronic granulomatous disease (CGD), characterized by enhanced susceptibility to life-threatening microbial infections and inflammatory disorders; hypomorphic NADPH oxidase alleles are associated with autoimmunity. Impaired apoptotic cell (AC) clearance is implicated as an important contributing factor in chronic inflammation and autoimmunity, but the role of NADPH oxidase–derived ROS in this process is incompletely understood. Here, we demonstrate that phagocytosis of AC (efferocytosis) potently activated NADPH oxidase in mouse peritoneal exudate macrophages (PEMs). ROS generation was dependent on macrophage CD11b, Toll-like receptor 2 (TLR2), TLR4, and myeloid differentiation primary response 88 (MyD88), and was also regulated by phosphatidylinositol 3-phosphate binding to the p40 phox oxidase subunit. Maturation of efferosomes containing apoptotic neutrophils was significantly delayed in CGD PEMs, including acidification and acquisition of proteolytic activity, and was associated with slower digestion of apoptotic neutrophil proteins. Treatment of wild-type macrophages with the vacuolar-type H+ ATPase inhibitor bafilomycin also delayed proteolysis within efferosomes, showing that luminal acidification was essential for efficient digestion of efferosome proteins. Finally, cross-presentation of AC-associated antigens by CGD PEMs to CD8 T cells was increased. These studies unravel a key role for the NADPH oxidase in the disposal of ACs by inflammatory macrophages. The oxidants generated promote efferosome maturation and acidification that facilitate the degradation of ingested ACs.
citation_standardnr 6266233
datenlieferant ipn_articles
feed_id 310
feed_publisher American Society of Hematology (ASH)
feed_publisher_url http://www.hematology.org/
insertion_date 2018-05-25
journaleissn 1528-0020
journalissn 0006-4971
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher American Society of Hematology (ASH)
quelle Blood
relation http://www.bloodjournal.org/cgi/content/short/131/21/2367?rss=1
schlagwort Phagocytes, Granulocytes, and Myelopoiesis
search_space articles
shingle_author_1 Bagaitkar, J., Huang, J., Zeng, M. Y., Pech, N. K., Monlish, D. A., Perez-Zapata, L. J., Miralda, I., Schuettpelz, L. G., Dinauer, M. C.
shingle_author_2 Bagaitkar, J., Huang, J., Zeng, M. Y., Pech, N. K., Monlish, D. A., Perez-Zapata, L. J., Miralda, I., Schuettpelz, L. G., Dinauer, M. C.
shingle_author_3 Bagaitkar, J., Huang, J., Zeng, M. Y., Pech, N. K., Monlish, D. A., Perez-Zapata, L. J., Miralda, I., Schuettpelz, L. G., Dinauer, M. C.
shingle_author_4 Bagaitkar, J., Huang, J., Zeng, M. Y., Pech, N. K., Monlish, D. A., Perez-Zapata, L. J., Miralda, I., Schuettpelz, L. G., Dinauer, M. C.
shingle_catch_all_1 NADPH oxidase activation regulates apoptotic neutrophil clearance by murine macrophages
Phagocytes, Granulocytes, and Myelopoiesis
The phagocyte reduced NAD phosphate (NADPH) oxidase generates superoxide, the precursor to reactive oxygen species (ROS) that has both antimicrobial and immunoregulatory functions. Inactivating mutations in NADPH oxidase alleles cause chronic granulomatous disease (CGD), characterized by enhanced susceptibility to life-threatening microbial infections and inflammatory disorders; hypomorphic NADPH oxidase alleles are associated with autoimmunity. Impaired apoptotic cell (AC) clearance is implicated as an important contributing factor in chronic inflammation and autoimmunity, but the role of NADPH oxidase–derived ROS in this process is incompletely understood. Here, we demonstrate that phagocytosis of AC (efferocytosis) potently activated NADPH oxidase in mouse peritoneal exudate macrophages (PEMs). ROS generation was dependent on macrophage CD11b, Toll-like receptor 2 (TLR2), TLR4, and myeloid differentiation primary response 88 (MyD88), and was also regulated by phosphatidylinositol 3-phosphate binding to the p40 phox oxidase subunit. Maturation of efferosomes containing apoptotic neutrophils was significantly delayed in CGD PEMs, including acidification and acquisition of proteolytic activity, and was associated with slower digestion of apoptotic neutrophil proteins. Treatment of wild-type macrophages with the vacuolar-type H+ ATPase inhibitor bafilomycin also delayed proteolysis within efferosomes, showing that luminal acidification was essential for efficient digestion of efferosome proteins. Finally, cross-presentation of AC-associated antigens by CGD PEMs to CD8 T cells was increased. These studies unravel a key role for the NADPH oxidase in the disposal of ACs by inflammatory macrophages. The oxidants generated promote efferosome maturation and acidification that facilitate the degradation of ingested ACs.
Bagaitkar, J., Huang, J., Zeng, M. Y., Pech, N. K., Monlish, D. A., Perez-Zapata, L. J., Miralda, I., Schuettpelz, L. G., Dinauer, M. C.
American Society of Hematology (ASH)
0006-4971
00064971
1528-0020
15280020
shingle_catch_all_2 NADPH oxidase activation regulates apoptotic neutrophil clearance by murine macrophages
Phagocytes, Granulocytes, and Myelopoiesis
The phagocyte reduced NAD phosphate (NADPH) oxidase generates superoxide, the precursor to reactive oxygen species (ROS) that has both antimicrobial and immunoregulatory functions. Inactivating mutations in NADPH oxidase alleles cause chronic granulomatous disease (CGD), characterized by enhanced susceptibility to life-threatening microbial infections and inflammatory disorders; hypomorphic NADPH oxidase alleles are associated with autoimmunity. Impaired apoptotic cell (AC) clearance is implicated as an important contributing factor in chronic inflammation and autoimmunity, but the role of NADPH oxidase–derived ROS in this process is incompletely understood. Here, we demonstrate that phagocytosis of AC (efferocytosis) potently activated NADPH oxidase in mouse peritoneal exudate macrophages (PEMs). ROS generation was dependent on macrophage CD11b, Toll-like receptor 2 (TLR2), TLR4, and myeloid differentiation primary response 88 (MyD88), and was also regulated by phosphatidylinositol 3-phosphate binding to the p40 phox oxidase subunit. Maturation of efferosomes containing apoptotic neutrophils was significantly delayed in CGD PEMs, including acidification and acquisition of proteolytic activity, and was associated with slower digestion of apoptotic neutrophil proteins. Treatment of wild-type macrophages with the vacuolar-type H+ ATPase inhibitor bafilomycin also delayed proteolysis within efferosomes, showing that luminal acidification was essential for efficient digestion of efferosome proteins. Finally, cross-presentation of AC-associated antigens by CGD PEMs to CD8 T cells was increased. These studies unravel a key role for the NADPH oxidase in the disposal of ACs by inflammatory macrophages. The oxidants generated promote efferosome maturation and acidification that facilitate the degradation of ingested ACs.
Bagaitkar, J., Huang, J., Zeng, M. Y., Pech, N. K., Monlish, D. A., Perez-Zapata, L. J., Miralda, I., Schuettpelz, L. G., Dinauer, M. C.
American Society of Hematology (ASH)
0006-4971
00064971
1528-0020
15280020
shingle_catch_all_3 NADPH oxidase activation regulates apoptotic neutrophil clearance by murine macrophages
Phagocytes, Granulocytes, and Myelopoiesis
The phagocyte reduced NAD phosphate (NADPH) oxidase generates superoxide, the precursor to reactive oxygen species (ROS) that has both antimicrobial and immunoregulatory functions. Inactivating mutations in NADPH oxidase alleles cause chronic granulomatous disease (CGD), characterized by enhanced susceptibility to life-threatening microbial infections and inflammatory disorders; hypomorphic NADPH oxidase alleles are associated with autoimmunity. Impaired apoptotic cell (AC) clearance is implicated as an important contributing factor in chronic inflammation and autoimmunity, but the role of NADPH oxidase–derived ROS in this process is incompletely understood. Here, we demonstrate that phagocytosis of AC (efferocytosis) potently activated NADPH oxidase in mouse peritoneal exudate macrophages (PEMs). ROS generation was dependent on macrophage CD11b, Toll-like receptor 2 (TLR2), TLR4, and myeloid differentiation primary response 88 (MyD88), and was also regulated by phosphatidylinositol 3-phosphate binding to the p40 phox oxidase subunit. Maturation of efferosomes containing apoptotic neutrophils was significantly delayed in CGD PEMs, including acidification and acquisition of proteolytic activity, and was associated with slower digestion of apoptotic neutrophil proteins. Treatment of wild-type macrophages with the vacuolar-type H+ ATPase inhibitor bafilomycin also delayed proteolysis within efferosomes, showing that luminal acidification was essential for efficient digestion of efferosome proteins. Finally, cross-presentation of AC-associated antigens by CGD PEMs to CD8 T cells was increased. These studies unravel a key role for the NADPH oxidase in the disposal of ACs by inflammatory macrophages. The oxidants generated promote efferosome maturation and acidification that facilitate the degradation of ingested ACs.
Bagaitkar, J., Huang, J., Zeng, M. Y., Pech, N. K., Monlish, D. A., Perez-Zapata, L. J., Miralda, I., Schuettpelz, L. G., Dinauer, M. C.
American Society of Hematology (ASH)
0006-4971
00064971
1528-0020
15280020
shingle_catch_all_4 NADPH oxidase activation regulates apoptotic neutrophil clearance by murine macrophages
Phagocytes, Granulocytes, and Myelopoiesis
The phagocyte reduced NAD phosphate (NADPH) oxidase generates superoxide, the precursor to reactive oxygen species (ROS) that has both antimicrobial and immunoregulatory functions. Inactivating mutations in NADPH oxidase alleles cause chronic granulomatous disease (CGD), characterized by enhanced susceptibility to life-threatening microbial infections and inflammatory disorders; hypomorphic NADPH oxidase alleles are associated with autoimmunity. Impaired apoptotic cell (AC) clearance is implicated as an important contributing factor in chronic inflammation and autoimmunity, but the role of NADPH oxidase–derived ROS in this process is incompletely understood. Here, we demonstrate that phagocytosis of AC (efferocytosis) potently activated NADPH oxidase in mouse peritoneal exudate macrophages (PEMs). ROS generation was dependent on macrophage CD11b, Toll-like receptor 2 (TLR2), TLR4, and myeloid differentiation primary response 88 (MyD88), and was also regulated by phosphatidylinositol 3-phosphate binding to the p40 phox oxidase subunit. Maturation of efferosomes containing apoptotic neutrophils was significantly delayed in CGD PEMs, including acidification and acquisition of proteolytic activity, and was associated with slower digestion of apoptotic neutrophil proteins. Treatment of wild-type macrophages with the vacuolar-type H+ ATPase inhibitor bafilomycin also delayed proteolysis within efferosomes, showing that luminal acidification was essential for efficient digestion of efferosome proteins. Finally, cross-presentation of AC-associated antigens by CGD PEMs to CD8 T cells was increased. These studies unravel a key role for the NADPH oxidase in the disposal of ACs by inflammatory macrophages. The oxidants generated promote efferosome maturation and acidification that facilitate the degradation of ingested ACs.
Bagaitkar, J., Huang, J., Zeng, M. Y., Pech, N. K., Monlish, D. A., Perez-Zapata, L. J., Miralda, I., Schuettpelz, L. G., Dinauer, M. C.
American Society of Hematology (ASH)
0006-4971
00064971
1528-0020
15280020
shingle_title_1 NADPH oxidase activation regulates apoptotic neutrophil clearance by murine macrophages
shingle_title_2 NADPH oxidase activation regulates apoptotic neutrophil clearance by murine macrophages
shingle_title_3 NADPH oxidase activation regulates apoptotic neutrophil clearance by murine macrophages
shingle_title_4 NADPH oxidase activation regulates apoptotic neutrophil clearance by murine macrophages
timestamp 2025-06-30T23:35:05.469Z
titel NADPH oxidase activation regulates apoptotic neutrophil clearance by murine macrophages
titel_suche NADPH oxidase activation regulates apoptotic neutrophil clearance by murine macrophages
topic W
WW-YZ
uid ipn_articles_6266233