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The BH3-only protein BIM contributes to late-stage involution in the mouse mammary gland

机译:仅BH3蛋白BIM有助于小鼠乳腺的晚期退化

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After cessation of lactation, involution of the mouse mammary gland proceeds in two distinct phases, a reversible and an irreversible one, which leads to the death and removal of alveolar cells. Cell death is preceded by the loss of STAT5 activity, which abrogates cell differentiation and gain of STAT3 activity. Despite early observations implicating BCL2 (B cell lymphoma 2) family proteins in this process, recent evidence suggests that STAT3-controlled cathepsin activity is most critical for cell death at the early stage of involution. Somewhat surprisingly, this cell death associates with but does not depend on the activation of pro-apoptotic effector caspases. However, transgenic overexpression of BCL2, that blocks caspase activation, delays involution while conditional deletion of BclX accelerates this process, suggesting that BCL2 family proteins are needed for the effective execution of involution. Here, we report on the transcriptional induction of multiple pro-apoptotic BCL2 family proteins of the 'BH3-only' subgroup during involution and the rate-limiting role of BIM in this process. Loss of Bim delayed epithelial cell clearance during involution after forced weaning in mice, whereas the absence of related Bmf had minor and loss of Bad or Noxa no impact on this process. Consistent with a contribution of BCL2 family proteins to the second wave of cell death during involution, loss of Bim reduced the number of apoptotic cells in this irreversible phase. Notably, the expression changes observed within the BCL2 family did not depend on STAT3 signalling, in line with its initiating role early in the process, but rather appear to result from relief of repression by STAT5. Our findings support the existence of a signalling circuitry regulating the irreversible phase of involution in mice by engaging BH3-only protein-driven mitochondrial apoptosis.
机译:停止泌乳后,小鼠乳腺的退化分为两个不同的阶段,一个可逆的阶段和一个不可逆的阶段,导致肺泡细胞的死亡和清除。细胞死亡之前是STAT5活性丧失,这废除了细胞分化和STAT3活性增强。尽管在此过程中涉及BCL2(B细胞淋巴瘤2)家族蛋白的早期观察,但最近的证据表明STAT3控制的组织蛋白酶活性对于内卷早期的细胞死亡最为关键。出乎意料的是,这种细胞死亡与促凋亡效应胱天蛋白酶的活化有关,但并不取决于其活化。但是,Bcl2的转基因过表达会阻止胱天蛋白酶的活化,从而延迟了对合的发生,而有条件的BclX缺失会加速该过程,这表明有效执行对合需要BCL2家族蛋白。在这里,我们报道了在进化过程中“仅BH3”亚组的多个促凋亡BCL2家族蛋白的转录诱导以及BIM在此过程中的限速作用。 Bim的丧失在小鼠强迫断奶后的复性过程中延迟了上皮细胞的清除,而缺乏相关的Bmf则轻微,而Bad或Noxa的丧失对此过程没有影响。与BCL2家族蛋白对内卷过程中第二次细胞死亡的贡献相一致,Bim的丢失减少了这一不可逆相中凋亡细胞的数量。值得注意的是,在BCL2家族中观察到的表达变化并不取决于STAT3信号传导,与其在该过程早期的启动作用一致,而似乎是由于STAT5抑制的缓解所致。我们的发现支持通过参与仅BH3蛋白质驱动的线粒体细胞凋亡来调控小鼠内卷化不可逆阶段的信号传导电路的存在。

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