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Phosphoinositide 3-kinase signalling pathway involvement in a truncated apoptotic cascade associated with motility loss and oxidative DNA damage in human spermatozoa

机译:磷酸肌醇3-激酶信号传导途径参与与人类精子活力丧失和氧化性DNA损伤相关的截短的凋亡级联反应

摘要

Human spermatozoa are characterized by poor functionality and abundant DNA damage that collude to generate the high incidences of male infertility and miscarriage seen in our species. Although apoptosis has been suggested as a possible cause of poor sperm quality, the ability of these cells to enter an apoptotic state and the factors that might trigger such an event are unresolved. In the present study we provide evidence that the commitment of these cells to apoptosis is negatively regulated by PI3K (phosphoinositide 3-kinase)/AKT. If PI3K activity is inhibited, then spermatozoa default to an apoptotic cascade characterized by rapid motility loss, mitochondrial reactive oxygen species generation, caspase activation in the cytosol, annexin V binding to the cell surface, cytoplasmic vacuolization and oxidative DNA damage. However, the specialized physical architecture of spermatozoa subsequently prevents endonucleases activated during this process from penetrating the sperm nucleus and cleaving the DNA. As a result, DNA fragmentation does not occur as a direct result of apoptosis in spermatozoa as it does in somatic cells, even though oxidative DNA adducts can clearly be detected. We propose that this unusual truncated apoptotic cascade prepares spermatozoa for silent phagocytosis within the female tract and prevents DNA-damaged spermatozoa from participating in fertilization.
机译:人类精子的特征是功能差和大量的DNA损伤,这些损伤共同导致了我们物种中男性不育和流产的高发。尽管已经表明凋亡可能是精子质量差的可能原因,但这些细胞进入凋亡状态的能力以及可能触发此类事件的因素尚未得到解决。在本研究中,我们提供的证据表明,这些细胞对凋亡的作用受到PI3K(磷酸肌醇3激酶)/ AKT的负调控。如果PI3K活性被抑制,则精子默认为凋亡级联,其特征为快速运动力丧失,线粒体活性氧生成,胞浆中胱天蛋白酶激活,膜联蛋白V与细胞表面结合,细胞质空泡化和氧化性DNA损伤。但是,精子的特殊物理结构随后阻止了在此过程中激活的核酸内切酶穿透精子核并切割DNA。结果,即使能清楚地检测到氧化性DNA加合物,DNA分裂也不会像精子中的细胞凋亡那样直接发生,而不会发生在体细胞中。我们建议,这种不寻常的截断的凋亡级联反应为精子做好了准备,以使雌性道内的吞噬作用得以沉默,并防止了DNA损伤的精子参与受精。

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