Laboratory for Homeodynamics, RIKEN BDR, Kobe, Japan.
Graduate School of Biostudies, Kyoto University, Kyoto, Japan.
EMBO J. 2023 Apr 17;42(8):e110454. doi: 10.15252/embj.2021110454. Epub 2023 Feb 2.
Cells need to sense stresses to initiate the execution of the dormant cell death program. Since the discovery of the first BH3-only protein Bad, BH3-only proteins have been recognized as indispensable stress sensors that induce apoptosis. BH3-only proteins have so far not been identified in Drosophila despite their importance in other organisms. Here, we identify the first Drosophila BH3-only protein and name it sayonara. Sayonara induces apoptosis in a BH3 motif-dependent manner and interacts genetically and biochemically with the BCL-2 homologous proteins, Buffy and Debcl. There is a positive feedback loop between Sayonara-mediated caspase activation and autophagy. The BH3 motif of sayonara phylogenetically appeared at the time of the ancestral gene duplication that led to the formation of Buffy and Debcl in the dipteran lineage. To our knowledge, this is the first identification of a bona fide BH3-only protein in Drosophila, thus providing a unique example of how cell death mechanisms can evolve both through time and across taxa.
细胞需要感知应激以启动休眠细胞死亡程序的执行。自从第一个 BH3-only 蛋白 Bad 被发现以来,BH3-only 蛋白已被认为是诱导细胞凋亡所必需的应激传感器。尽管 BH3-only 蛋白在其他生物体中很重要,但迄今为止在果蝇中尚未发现它们。在这里,我们鉴定了第一个果蝇 BH3-only 蛋白,并将其命名为 Sayonara。Sayonara 以 BH3 基序依赖的方式诱导细胞凋亡,并与 BCL-2 同源蛋白 Buffy 和 Debcl 在遗传和生化上相互作用。Sayonara 介导的半胱天冬酶激活和自噬之间存在正反馈回路。Sayonara 的 BH3 基序在导致 Buffy 和 Debcl 在双翅目谱系中形成的祖先基因复制时在进化上出现。据我们所知,这是在果蝇中首次鉴定出真正的 BH3-only 蛋白,从而为细胞死亡机制如何随着时间和跨越分类群而进化提供了一个独特的例子。