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Ubl4A is critical for mitochondrial fusion process under nutrient deprivation stress

机译:UBL4A对于营养剥夺压力下的线粒体融合过程至关重要

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Mitochondrial fusion and fission are dynamic processes regulated by the cellular microenvironment. Under nutrient starvation conditions, mitochondrial fusion is strengthened for energy conservation. We have previously shown that newborns of Ubl4A-deficient mice were more sensitive to starvation stress with a higher rate of mortality than their wild-type littermates. Ubl4A binds with the actin-related protein Arp2/3 complex to synergize the actin branching process. Here, we showed that deficiency in Ubl4A resulted in mitochondrial fragmentation and apoptosis. A defect in the fusion process was the main cause of the mitochondrial fragmentation and resulted from a shortage of primed Arp2/3 complex pool around the mitochondria in the Ubl4A-deficient cells compared to the wild-type cells. As a result, the mitochondrial fusion process was not undertaken quickly enough to sustain starvation stress-induced cell death. Consequently, fragmented mitochondria lost their membrane integrity and ROS was accumulated to trigger caspase 9-dependent apoptosis before autophagic rescue. Furthermore, the wild-type Ubl4A, but not the Arp2/3-binding deficient mutant, could rescue the starvation-induced mitochondrial fragmentation phenotype. These results suggest that Ubl4A promotes the mitochondrial fusion process via Arp2/3 complex during the initial response to nutrient deprivation for cell survival.
机译:线粒体融合和裂变是细胞微环境调节的动态过程。在营养饥饿条件下,能量保育加强了线粒体融合。我们之前已经表明,UBL4A缺陷小鼠的新生儿对饥饿胁迫比其野生型凋落物更高的饥饿胁迫更敏感。 UBL4A与肌动蛋白相关的蛋白质ARP2 / 3复合物结合以协同肌动蛋白分支过程。在这里,我们表明UBL4A的缺乏导致线粒体破碎和细胞凋亡。融合过程中的缺陷是线粒体破碎的主要原因,并且与野生型细胞相比,UBL4A缺陷细胞中的线粒体围绕线粒体围绕线粒体的初步arp2 / 3复合池的短缺。结果,没有足够迅速进行线粒体融合过程以维持饥饿应激诱导的细胞死亡。因此,破碎的线粒体丧失了膜完整性,并且累积ROS以在自噬救援之前引发依赖胱天蛋白酶9依赖性细胞凋亡。此外,野生型UBL4A,但不是ARP2 / 3结合缺陷型突变体,可以拯救饥饿诱导的线粒体碎片表型。这些结果表明,UBL4A在初始反应期间通过ARP2 / 3复合物促进线粒体融合过程,对细胞存活的营养剥夺。

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