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Non-apoptotic functions of caspases in myeloid cell differentiation

机译:半胱天冬酶在髓样细胞分化中的非凋亡功能

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摘要

Subtle caspase activation is associated with the differentiation of several myeloid lineages. A tightly orchestrated dance between caspase-3 activation and the chaperone HSP70 that migrates to the nucleus to protect the master regulator GATA-1 from cleavage transiently occurs in basophilic erythroblasts and may prepare nucleus and organelle expel that occurs at the terminal phase of erythroid differentiation. A spatially restricted activation of caspase-3 occurs in maturing megakaryocytes to promote proplatelet maturation and platelet shedding in the bloodstream. In a situation of acute platelet need, caspase-3 could be activated in response to IL-1α and promote megakaryocyte rupture. In peripheral blood monocytes, colony-stimulating factor-1 provokes the formation of a molecular platform in which caspase-8 is activated, which downregulates nuclear factor-kappa B (NF-κB) activity and activates downstream caspases whose target fragments such as those generated by nucleophosmin (NPM1) cleavage contribute to the generation of resting macrophages. Human monocytes secrete mature IL-1β in response to lipopolysaccharide through an alternative inflammasome activation that involves caspase-8, a pathway that does not lead to cell death. Finally, active caspase-3 is part of the proteases contained in secretory granules of mast cells. Many questions remain on how these proteases are activated in myeloid cell lineages, which target proteins are cleaved, whereas other are protected from proteolysis, the precise role of cleaved proteins in cell differentiation and functions, and the link between these non-apoptotic functions of caspases and the death of these diverse cell types. Better understanding of these functions may generate therapeutic strategies to control cytopenias or modulate myeloid cell functions in various pathological situations.
机译:微妙的半胱天冬酶激活与几种髓系谱系的分化有关。在嗜碱性成红细胞中,caspase-3激活和伴侣HSP70迁移到细胞核以保护主调节因子GATA-1不会发生瞬时裂解,这是紧密协调的,可能会导致细胞核和细胞器排出,发生在类红细胞分化的末期。 caspase-3在空间上受限制的活化发生在成熟的巨核细胞中,以促进血流中的血小板成熟和血小板脱落。在急需血小板的情况下,caspase-3可以响应IL-1α而被激活并促进巨核细胞破裂。在外周血单核细胞中,集落刺激因子1激发了激活caspase-8的分子平台的形成,从而下调了核因子-κB(NF-κB)的活性并激活了下游胱天蛋白酶,其靶片段如产生的核磷素(NPM1)的裂解有助于静息巨噬细胞的生成。人类单核细胞通过涉及caspase-8的另一种炎性体激活,响应脂多糖分泌成熟的IL-1β,该途径不导致细胞死亡。最后,活性caspase-3是肥大细胞分泌颗粒中所含蛋白酶的一部分。这些蛋白酶如何在髓样细胞谱系中被激活,这些蛋白被裂解,而其他蛋白酶受到蛋白水解保护,裂解蛋白在细胞分化和功能中的确切作用,以及这些半胱氨酸蛋白酶的非凋亡功能之间的联系,仍然存在许多问题。以及这些不同细胞类型的死亡。更好地了解这些功能可能会产生治疗策略,以控制各种疾病中的血细胞减少或调节髓样细胞功能。

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