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The C-terminal domain (CTD) in linker histones antagonizes anti-apoptotic proteins to modulate apoptotic outcomes at the mitochondrion

机译:接头组蛋白中的C末端结构域(CTD)拮抗抗凋亡蛋白以调节线粒体的凋亡结果

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摘要

The loss of mitochondrial integrity as a consequence of apoptogenic complexes formed on the outer membrane constitutes a key step in controlling progression of apoptotic cascades. Here, we show that multiple members of the linker histone (LH) family of proteins modify apoptotic cascades initiated by the Bcl-2 protein Bak, and impart resistance to its endogenous antagonist Bcl-xL. Our experiments reveal apoptogenic capabilities equivalent to those documented for H1.2 in H1.1 and H1.3 isoforms. Deletion mutants of H1.2 and site-directed mutagenesis of H1.1 and H1.2 implicated the C-terminal domain in apoptogenic activity. In this context, disruption of protein kinase-C activity using chemical inhibitors, dominant-negative approaches and RNA interference coupled with site-directed modifications in H1.1, identified the protein kinase-Cβ1 isoform as a repressor of H1.1/H1.3 apoptogenic activity. Finally, a H1.2 C-terminal tail recombinant attenuated Bcl-xl inhibition of Bak-induced apoptosis, suggesting that the C-terminal domain was necessary and sufficient for apoptogenic functions. Thus, integration with apoptotic intermediates (via C-terminal tail interactions) may constitute a more generalized function of LH isoforms in apoptotic cascades.
机译:由于在外膜上形成的凋亡复合物导致线粒体完整性的丧失构成了控制凋亡级联反应进展的关键步骤。在这里,我们显示蛋白质的组蛋白(LH)家族的多个成员修改由Bcl-2蛋白Bak引发的凋亡级联反应,并对其内源性拮抗剂Bcl-xL产生抗性。我们的实验揭示了与H1.2和H1.3亚型中H1.2所记录的细胞凋亡能力相同的细胞。 H1.2的缺失突变体和H1.1和H1.2的定点诱变牵涉到C端域的细胞凋亡活性。在这种情况下,使用化学抑制剂,显性负性方法和RNA干扰以及H1.1中的定点修饰破坏了蛋白激酶C的活性,确定蛋白激酶C1异构体是H1.1 / H1的阻遏物。 3具有凋亡作用。最后,H1.2 C-末端尾部重组体减弱了Bcl-xl对Bak诱导的细胞凋亡的抑制作用,表明C-末端结构域对于细胞凋亡功能是必要和充分的。因此,与凋亡中间体的整合(通过C末端尾部相互作用)可能在凋亡级联反应中构成LH亚型的更广泛的功能。

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