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On the evolution of erythrocyte programmed cell death: apoptosis of Rana esculenta nucleated red blood cells involves cysteine proteinase activation and mitochondrion permeabilization

机译:关于红细胞程序性细胞死亡的演变:食用蛙蛙有核红细胞的凋亡涉及半胱氨酸蛋白酶激活和线粒体通透性

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Batracian Rana esculenta erythrocytes cell death induced by either calcium influx, or staurosporine, involves typical apoptotic phenotype. Our data reveal: (i) a drastic modification of the cell morphology with loss of the ellipsoidal form as assessed by phase contrast microscopy and scanning electron microscopy; (ii) an exposure of the phosphatidylserine residues in the outer leaflet of the cell membrane; (iii) a caspase-3-like activity; (iv) a mitochondrial membrane potential (DeltaPsim) loss; and (v) a chromatin condensation and fragmentation. Erythrocyte chromatin condensation and fragmentation are prevented by caspase and calpain peptide inhibitors. These inhibitors also prevent DeltaPsim loss supporting the idea that mitochondria is a central sensor for Rana erythrocytes cell death. Our observations highlight the conservation of the programmed cell death machinery in erythrocytes across kingdom
机译:钙内流或星形孢菌素诱导的蝙蝠rac林红细胞死亡涉及典型的凋亡表型。我们的数据显示:(i)通过相差显微镜和扫描电子显微镜评估,细胞形态发生了巨大变化,椭圆形形式消失; (ii)暴露于细胞膜外小叶中的磷脂酰丝氨酸残基; (iii)caspase-3样活性; (iv)线粒体膜电位(DeltaPsim)的损失; (v)染色质浓缩和碎片化。半胱天冬酶和钙蛋白酶肽抑制剂可防止红细胞染色质凝结和断裂。这些抑制剂还可以防止DeltaPsim丢失,从而支持线粒体是Rana红细胞死亡的中心传感器的想法。我们的观察结果突出显示了王国中红细胞中程序性细胞死亡机制的保守性

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