Department of Epigenetics and Molecular Carcinogenesis, The University of Texas MD Anderson Cancer Center, Smithville, Texas 78957, USA.
Institute for Cellular and Molecular Biology, The University of Texas at Austin, Austin, Texas 78712, USA.
Nat Commun. 2016 Nov 24;7:13565. doi: 10.1038/ncomms13565.
According to dogma, initiator caspases are activated through proximity-induced homodimerization, but some studies infer that during apoptosis caspase-9 may instead form a holoenzyme with the Apaf-1 apoptosome. Using several biochemical approaches, including a novel site-specific crosslinking technique, we provide the first direct evidence that procaspase-9 homodimerizes within the apoptosome, markedly increasing its avidity for the complex and inducing selective intramolecular cleavage at Asp-315. Remarkably, however, procaspase-9 could also bind via its small subunit to the NOD domain in Apaf-1, resulting in the formation of a heterodimer that more efficiently activated procaspase-3. Following cleavage, the intersubunit linker (and associated conformational changes) in caspase-9-p35/p12 inhibited its ability to form homo- and heterodimers, but feedback cleavage by caspase-3 at Asp-330 removed the linker entirely and partially restored activity to caspase-9-p35/p10. Thus, the apoptosome mediates the formation of caspase-9 homo- and heterodimers, both of which are impacted by cleavage and contribute to its overall function.
根据教条,起始半胱天冬酶通过临近诱导的同源二聚化而被激活,但一些研究推断,在细胞凋亡过程中,胱冬酶-9 可能会与 Apaf-1 凋亡体形成全酶。我们使用几种生化方法,包括一种新的特异性交联技术,首次直接提供证据表明,前胱冬酶-9 在凋亡体中同源二聚化,显著增加其对复合物的亲和力,并诱导在天冬氨酸 315 处选择性的分子内切割。然而,值得注意的是,前胱冬酶-9 也可以通过其小亚基与 Apaf-1 的 NOD 结构域结合,形成一种异二聚体,更有效地激活前胱冬酶-3。切割后,胱冬酶-9-p35/p12 的亚基间连接肽(和相关构象变化)抑制其形成同源和异源二聚体的能力,但胱冬酶-3 在天冬氨酸 330 处的切割反馈完全去除连接肽,并部分恢复胱冬酶-9-p35/p10 的活性。因此,凋亡体介导胱冬酶-9 同源和异源二聚体的形成,这两者都受到切割的影响,并对其整体功能有贡献。