Creagh Emma M, Brumatti Gabriela, Sheridan Clare, Duriez Patrick J, Taylor Rebecca C, Cullen Sean P, Adrain Colin, Martin Seamus J
Molecular Cell Biology Laboratory, Department of Genetics, Smurfit Institute, Trinity College, Dublin, Ireland [corrected]
PLoS One. 2009;4(3):e5055. doi: 10.1371/journal.pone.0005055. Epub 2009 Mar 30.
Members of the caspase family of cysteine proteases coordinate cell death through restricted proteolysis of diverse protein substrates and play a conserved role in apoptosis from nematodes to man. However, while numerous substrates for the mammalian cell death-associated caspases have now been described, few caspase substrates have been identified in other organisms. Here, we have utilized a proteomics-based approach to identify proteins that are cleaved by caspases during apoptosis in Drosophila D-Mel2 cells, a subline of the Schneider S2 cell line. This approach identified multiple novel substrates for the fly caspases and revealed that bicaudal/betaNAC is a conserved substrate for Drosophila and mammalian caspases. RNAi-mediated silencing of bicaudal expression in Drosophila D-Mel2 cells resulted in a block to proliferation, followed by spontaneous apoptosis. Similarly, silencing of expression of the mammalian bicaudal homologue, betaNAC, in HeLa, HEK293T, MCF-7 and MRC5 cells also resulted in spontaneous apoptosis. These data suggest that bicaudal/betaNAC is essential for cell survival and is a conserved target of caspases from flies to man.
半胱氨酸蛋白酶家族的半胱天冬酶成员通过对多种蛋白质底物进行有限的蛋白水解来协调细胞死亡,并在从线虫到人类的细胞凋亡过程中发挥保守作用。然而,尽管目前已经描述了许多与哺乳动物细胞死亡相关的半胱天冬酶的底物,但在其他生物体中鉴定出的半胱天冬酶底物却很少。在这里,我们利用基于蛋白质组学的方法来鉴定在果蝇D-Mel2细胞(施耐德S2细胞系的一个亚系)凋亡过程中被半胱天冬酶切割的蛋白质。这种方法鉴定出了果蝇半胱天冬酶的多个新底物,并揭示了双尾/betaNAC是果蝇和哺乳动物半胱天冬酶的保守底物。RNA干扰介导的果蝇D-Mel2细胞中双尾表达的沉默导致增殖受阻,随后发生自发凋亡。同样,在HeLa、HEK293T、MCF-7和MRC5细胞中沉默哺乳动物双尾同源物betaNAC的表达也导致自发凋亡。这些数据表明,双尾/betaNAC对细胞存活至关重要,并且是从果蝇到人类的半胱天冬酶的保守靶点。