Department of Biology & Biochemistry , University of Bath , Claverton Down , Bath BA2 7AY , United Kingdom.
Biochemistry. 2020 Feb 4;59(4):530-540. doi: 10.1021/acs.biochem.9b00631. Epub 2019 Dec 19.
Basic leucine-zipper (bZIP) proteins represent difficult, yet compelling, oncogenic targets since numerous cell-signaling cascades converge upon them, where they function to modulate the transcription of specific gene targets. bZIPs are widely recognized as important regulators of cellular processes that include cell proliferation, apoptosis, and differentiation. Once such validated transcriptional regulator, activator protein-1, is typically composed of heterodimers of Fos and Jun family members, with cFos-cJun being the best described. It has been shown to be key in the progression and development of a number of different diseases. As a proof-of-principle for our approach, we describe the first use of a novel combined / peptide-library screening platform that facilitates the derivation of a sequence that displays high selectivity for cJun relative to cFos, while also avoiding homodimerization. In particular, >60 million peptides were computationally screened and all potential on/off targets ranked according to predicted stability, leading to a reduced size library that was further refined by intracellular selection. The derived sequence is predicted to have limited cross-talk with a second previously derived peptide antagonist that is selective for cFos in the presence of cJun. The study provides new insight into the use of multistate screening with the ability to combine computational and intracellular approaches in evolving multiple cocompatible peptides that are capable of satisfying conflicting design requirements.
碱性亮氨酸拉链(bZIP)蛋白是具有挑战性但又引人注目的致癌靶点,因为许多细胞信号级联都集中在它们身上,在那里它们可以调节特定基因靶标的转录。bZIP 被广泛认为是细胞过程的重要调节剂,包括细胞增殖、凋亡和分化。作为一种经过验证的转录调节因子,激活蛋白-1(AP-1)通常由 Fos 和 Jun 家族成员的异二聚体组成,其中 cFos-cJun 是描述最多的。它已被证明是许多不同疾病进展和发展的关键。作为我们方法的原理验证,我们描述了第一个使用新型组合/肽文库筛选平台的实例,该平台有助于衍生出一种相对于 cFos 对 cJun 显示高选择性的序列,同时避免同源二聚化。具体来说,计算筛选了超过 6000 万个肽,根据预测的稳定性对所有潜在的开/关靶标进行了排序,从而产生了一个通过细胞内选择进一步细化的较小文库。衍生的序列预计与第二个先前衍生的肽拮抗剂的交叉对话有限,该拮抗剂在存在 cJun 的情况下对 cFos 具有选择性。该研究为使用多态性筛选提供了新的见解,这种筛选具有将计算和细胞内方法结合起来的能力,从而可以进化出多个兼容的肽,这些肽能够满足相互冲突的设计要求。