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MICU1 敲低细胞中线粒体钙摄取的动力学。

Dynamics of mitochondrial Ca2+ uptake in MICU1-knockdown cells.

机构信息

*Instituto de Biología y Genética Molecular (IBGM), Departamento de Bioquímica y Biología Molecular y Fisiología, Facultad de Medicina, Universidad de Valladolid and Consejo Superior de Investigaciones Científicas (CSIC), Ramón y Cajal, 7, E-47005 Valladolid, Spain.

出版信息

Biochem J. 2014 Feb 15;458(1):33-40. doi: 10.1042/BJ20131025.

Abstract

MICU1 (Ca2+ uptake protein 1, mitochondrial) is an important regulator of the MCU (Ca2+ uniporter protein, mitochondrial) that has been shown recently to act as a gatekeeper of the MCU at low [Ca2+]c (cytosolic [Ca2+]). In the present study we have investigated in detail the dynamics of MCU activity after shRNA-knockdown of MICU1 and we have found several new interesting properties. In MICU1-knockdown cells, the rate of mitochondrial Ca2+ uptake was largely increased at a low [Ca2+]c (<2 μM), but it was decreased at a high [Ca2+]c (>4 μM). In the 2-4 μM range a mixed behaviour was observed, where mitochondrial Ca2+ uptake started earlier in the MICU1-silenced cells, but at a lower rate than in the controls. The sensitivity of Ca2+ uptake to Ruthenium Red and Ru360 was similar at both high and low [Ca2+]c, indicating that the same Ca2+ pathway was operating in both cases. The increased Ca2+-uptake rate observed at a [Ca2+]c below 2 μM was transient and became inhibited during Ca2+ entry. Development of this inhibition was slow, requiring 5 min for completion, and was hardly reversible. Therefore MICU1 acts both as a MCU gatekeeper at low [Ca2+]c and as a cofactor necessary to reach the maximum Ca2+-uptake rate at high [Ca2+]c. Moreover, in the absence of MICU1, the MCU becomes sensitive to a slow-developing inhibition that requires prolonged increases in [Ca2+]c in the low micromolar range.

摘要

MICU1(Ca2+摄取蛋白 1,线粒体)是 MCU(Ca2+单通道蛋白,线粒体)的重要调节因子,最近已被证明在低 [Ca2+]c(胞质 [Ca2+])下作为 MCU 的守门员。在本研究中,我们详细研究了 MICU1 短发夹 RNA 敲低后 MCU 活性的动力学,发现了一些新的有趣特性。在 MICU1 敲低细胞中,在低 [Ca2+]c(<2 μM)下,线粒体 Ca2+摄取率大大增加,但在高 [Ca2+]c(>4 μM)下则降低。在 2-4 μM 范围内观察到混合行为,其中在 MICU1 沉默细胞中,线粒体 Ca2+摄取开始较早,但速率低于对照。在高 [Ca2+]c 和低 [Ca2+]c 下,Ca2+摄取对钌红和 Ru360 的敏感性相似,表明在两种情况下都存在相同的 Ca2+途径。在 [Ca2+]c 低于 2 μM 时观察到的增加的 Ca2+-摄取率是短暂的,并在 Ca2+进入时被抑制。这种抑制的发展缓慢,需要 5 分钟才能完成,几乎不可逆转。因此,MICU1 在低 [Ca2+]c 下作为 MCU 的门控蛋白起作用,并作为在高 [Ca2+]c 下达到最大 Ca2+-摄取率所需的辅助因子起作用。此外,在没有 MICU1 的情况下,MCU 对需要在低微摩尔范围内长时间增加 [Ca2+]c 的缓慢发展的抑制作用变得敏感。

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