MICU 1 and MICU 2 play nonredundant roles in the regulation of the mitochondrial calcium uniporter
The mitochondrial uniporter is a selective Ca2+ channel regulated by MICU 1, an EF hand‐
containing protein in the organelle's intermembrane space. MICU 1 physically associates
with and is co‐expressed with a paralog, MICU 2. To clarify the function of MICU 1 and its
relationship to MICU 2, we used gene knockout (KO) technology. We report that HEK‐293T
cells lacking MICU 1 or MICU 2 lose a normal threshold for Ca2+ intake, extending the
known gating function of MICU 1 to MICU 2. Expression of MICU 1 or MICU 2 mutants …
containing protein in the organelle's intermembrane space. MICU 1 physically associates
with and is co‐expressed with a paralog, MICU 2. To clarify the function of MICU 1 and its
relationship to MICU 2, we used gene knockout (KO) technology. We report that HEK‐293T
cells lacking MICU 1 or MICU 2 lose a normal threshold for Ca2+ intake, extending the
known gating function of MICU 1 to MICU 2. Expression of MICU 1 or MICU 2 mutants …
Abstract
The mitochondrial uniporter is a selective Ca2+ channel regulated by MICU1, an EF hand‐containing protein in the organelle's intermembrane space. MICU1 physically associates with and is co‐expressed with a paralog, MICU2. To clarify the function of MICU1 and its relationship to MICU2, we used gene knockout (KO) technology. We report that HEK‐293T cells lacking MICU1 or MICU2 lose a normal threshold for Ca2+ intake, extending the known gating function of MICU1 to MICU2. Expression of MICU1 or MICU2 mutants lacking functional Ca2+‐binding sites leads to a striking loss of Ca2+ uptake, suggesting that MICU1/2 disinhibit the channel in response to a threshold rise in [Ca2+]. MICU2's activity and physical association with the pore require the presence of MICU1, though the converse is not true. We conclude that MICU1 and MICU2 are nonredundant and together set the [Ca2+] threshold for uniporter activity.
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