Skip to main content

Mitochondrial Fission Promotes the Continued Clearance of Apoptotic Cells by Macrophages.

Citation
Wang, Y., et al. “Mitochondrial Fission Promotes The Continued Clearance Of Apoptotic Cells By Macrophages.”. Cell, pp. 331-345.e22.
Center Columbia University
Author Ying Wang, Manikandan Subramanian, Arif Yurdagul, Valéria C Barbosa-Lorenzi, Bishuang Cai, Jaime de Juan-Sanz, Timothy A Ryan, Masatoshi Nomura, Frederick R Maxfield, Ira Tabas
Keywords Drp1, apoptotic cells, atherosclerosis, calcium signaling, efferocytosis, Macrophage, Mitochondrial dynamics, mitochondrial fission, phagocytosis
Abstract

Clearance of apoptotic cells (ACs) by phagocytes (efferocytosis) prevents post-apoptotic necrosis and dampens inflammation. Defective efferocytosis drives important diseases, including atherosclerosis. For efficient efferocytosis, phagocytes must be able to internalize multiple ACs. We show here that uptake of multiple ACs by macrophages requires dynamin-related protein 1 (Drp1)-mediated mitochondrial fission, which is triggered by AC uptake. When mitochondrial fission is disabled, AC-induced increase in cytosolic calcium is blunted owing to mitochondrial calcium sequestration, and calcium-dependent phagosome formation around secondarily encountered ACs is impaired. These defects can be corrected by silencing the mitochondrial calcium uniporter (MCU). Mice lacking myeloid Drp1 showed defective efferocytosis and its pathologic consequences in the thymus after dexamethasone treatment and in advanced atherosclerotic lesions in fat-fed Ldlr mice. Thus, mitochondrial fission in response to AC uptake is a critical process that enables macrophages to clear multiple ACs and to avoid the pathologic consequences of defective efferocytosis in vivo.

Year of Publication
2017
Journal
Cell
Volume
171
Issue
2
Number of Pages
331-345.e22
Date Published
10/2017
ISSN Number
1097-4172
DOI
10.1016/j.cell.2017.08.041
Alternate Journal
Cell
PMID
28942921
PMCID
PMC5679712
Download citation