Open Access
Nature Communications, volume 11, issue 1, publication number 5489
Crbn modulates calcium influx by regulating Orai1 during efferocytosis
Hyunji Moon
1, 2
,
Chanhyuk Min
1, 2
,
Gayoung Kim
1
,
Deokhwan Kim
1, 2
,
Kwanhyeong Kim
1, 2
,
Sang Ah Lee
1, 2
,
Byeongjin Moon
1, 2
,
Susumin Yang
1, 2
,
Juyeon Lee
1, 2
,
Seung-Joo Yang
1
,
Steve K Cho
1
,
Gwangrog Lee
1, 2
,
Chang Sup Lee
3
,
Zee-Yong Park
1
,
Daeho Park
1, 2, 4
Publication type: Journal Article
Publication date: 2020-10-30
Journal:
Nature Communications
scimago Q1
SJR: 4.887
CiteScore: 24.9
Impact factor: 14.7
ISSN: 20411723
General Chemistry
General Biochemistry, Genetics and Molecular Biology
General Physics and Astronomy
Abstract
Calcium flux regulating intracellular calcium levels is essential and modulated for efficient efferocytosis. However, the molecular mechanism by which calcium flux is modulated during efferocytosis remains elusive. Here, we report that Orai1, a Crbn substrate, is upregulated via its attenuated interaction with Crbn during efferocytosis, which increases calcium influx into phagocytes and thereby promotes efferocytosis. We found that Crbn deficiency promoted phagocytosis of apoptotic cells, which resulted from facilitated phagocytic cup closure and was nullified by a CRAC channel inhibitor. In addition, Orai1 associated with Crbn, resulting in ubiquitination and proteasomal degradation of Orai1 and alteration of SOCE-mediated calcium influx. The association of Orai1 with Crbn was attenuated during efferocytosis, leading to reduced ubiquitination of Orai1 and consequently upregulation of Orai1 and calcium influx. Collectively, our study reveals a regulatory mechanism by which calcium influx is modulated by a Crbn-Orai1 axis to facilitate efferocytosis. Calcium flux must be carefully controlled during the phagocytosis of apoptotic cells (efferocytosis), although how this occurs is not fully understood. Here, the authors show that the Cereblon E3 ligase regulates Orai1 degradation and subsequently SOCE-mediated calcium influx.
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