| Literature DB >> 31397067 |
Wenping Wu1, Qingya Shen1, Zhen Lei1, Zhiyu Qiu1, Dan Li1, Hairun Pei1, Jimin Zheng1, Zongchao Jia2.
Abstract
The mitochondrial calcium uniporter (MCU) complex mediates the uptake of Ca2+ into mitochondria. Its activity is regulated by a heterodimer of MICU1 and MICU2, two EF-hand-containing proteins that act as the main gatekeeper of the uniporter. Herein we report the crystal structure of human MICU2 at 1.96 Å resolution. Our structure reveals a dimeric architecture of MICU2, in which each monomer adopts the canonical two-lobe structure with a pair of EF-hands in each lobe. Both Ca2+ -bound and Ca2+ -free EF-hands are observed in our structure. Moreover, we characterize the interaction sites within the MICU2 homodimer, as well as the MICU1-MICU2 heterodimer in both Ca2+ -free and Ca2+ -bound conditions. Glu242 in MICU1 and Arg352 in MICU2 are crucial for apo heterodimer formation, while Phe383 in MICU1 and Glu196 in MICU2 significantly contribute to the interaction in the Ca2+ -bound state. Based on our structural and biochemical analyses, we propose a model for MICU1-MICU2 heterodimer formation and its conformational transition from apo to a more compact Ca2+ -bound state, which expands our understanding of this co-regulatory mechanism critical for MCU's mitochondrial calcium uptake function.Entities:
Keywords: EF-hands; MICU1-MICU2 complex; MICU2; mitochondrial calcium uniporter
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Year: 2019 PMID: 31397067 PMCID: PMC6726906 DOI: 10.15252/embr.201847488
Source DB: PubMed Journal: EMBO Rep ISSN: 1469-221X Impact factor: 8.807