School of Natural Science, Department of Chemistry and Biochemistry and Graduate School of Biochemistry, Yeungnam University, Gyeongsan, Republic of Korea.
Department of Metrology for Quality of Life, Center for Bioanalysis, Korea Research Institute of Standards and Science, Daejeon, Republic of Korea.
PLoS One. 2017 Dec 14;12(12):e0189819. doi: 10.1371/journal.pone.0189819. eCollection 2017.
Cell death-inducing DNA fragmentation factor 45 (DFF45)-like effector (CIDE) domains were initially identified as protein interaction modules in apoptotic nucleases and are now known to form a highly conserved family with diverse functions that range from cell death to lipid homeostasis. In the fly, four CIDE domain-containing proteins (DFF-related protein [DREP]-1-4) and their functions, including interaction relationships, have been identified. In this study, we introduced and investigated acidic side-disrupted mutants of DREP1, DREP2, and DREP3. We discovered that the acidic surface patches of DREP1 and DREP3 are critical for the homo-dimerization. In addition, we found that the acidic surface sides of DREP1 and DREP3 interact with the basic surface sides of DREP2 and DREP4. Our current study provides clear evidence demonstrating the mechanism of the interactions between four DREP proteins in the fly.
细胞死亡诱导 DNA 片段化因子 45(DFF45)样效应物(CIDE)结构域最初被鉴定为凋亡核酶中的蛋白质相互作用模块,现在已知它们形成了一个高度保守的家族,具有从细胞死亡到脂质稳态等多种功能。在果蝇中,已经鉴定出四种含有 CIDE 结构域的蛋白质(DREP 相关蛋白 [DREP]-1-4)及其功能,包括相互作用关系。在这项研究中,我们引入并研究了 DREP1、DREP2 和 DREP3 的酸性侧破坏突变体。我们发现 DREP1 和 DREP3 的酸性表面补丁对于同源二聚化至关重要。此外,我们发现 DREP1 和 DREP3 的酸性表面侧与 DREP2 和 DREP4 的碱性表面侧相互作用。我们目前的研究提供了明确的证据,证明了果蝇中四种 DREP 蛋白之间相互作用的机制。