Voulgaridou Georgia-Persephoni, Theologidis Vasileios, Xanthis Vasileios, Papagiannaki Eleni, Tsochantaridis Ilias, Fadouloglou Vasiliki E, Pappa Aglaia
Department of Molecular Biology and Genetics, Faculty of Health Sciences, Democritus University of Thrace, Alexandroupolis, Greece.
Front Mol Biosci. 2023 Mar 20;10:1161111. doi: 10.3389/fmolb.2023.1161111. eCollection 2023.
Aldehyde dehydrogenase 3A1 (ALDH3A1) by oxidizing medium chain aldehydes to their corresponding carboxylic acids, is involved in the detoxification of toxic byproducts and is considered to play an important role in antioxidant cellular defense. ALDH3A1 has been implicated in various other functions such as cell proliferation, cell cycle regulation, and DNA damage response. Recently, it has been identified as a putative biomarker of prostate, gastric, and lung cancer stem cell phenotype. Although ALDH3A1 has multifaceted functions in both normal and cancer homeostasis, its modes of action are currently unknown. To this end, we utilized a random 12-mer peptide phage display library to identify efficiently human ALDH3A1-interacting peptides. One prevailing peptide (P1) was systematically demonstrated to interact with the protein of interest, which was further validated by peptide ELISA. Bioinformatic analysis indicated two putative P1 binding sites on the protein surface implying biomedical potential and potent inhibitory activity of the P1 peptide on hALDH3A1 activity was demonstrated by enzymatic studies. Furthermore, in search of potential hALDH3A1 interacting players, a BLASTp search demonstrated that no protein in the database includes the full-length amino acid sequence of P1, but identified a list of proteins containing parts of the P1 sequence, which may prove potential hALDH3A1 interacting partners. Among them, Protein Kinase C Binding Protein 1 and General Transcription Factor II-I are candidates of high interest due to their cellular localization and function. To conclude, this study identifies a novel peptide with potential biomedical applications and further suggests a list of protein candidates be explored as possible hALDH3A1-interacting partners in future studies.
醛脱氢酶3A1(ALDH3A1)通过将中链醛氧化为相应的羧酸,参与有毒副产物的解毒过程,并被认为在细胞抗氧化防御中发挥重要作用。ALDH3A1还涉及多种其他功能,如细胞增殖、细胞周期调控和DNA损伤反应。最近,它已被确定为前列腺癌、胃癌和肺癌干细胞表型的一种假定生物标志物。尽管ALDH3A1在正常和癌症稳态中具有多方面的功能,但其作用模式目前尚不清楚。为此,我们利用一个随机的12聚体肽噬菌体展示文库来高效鉴定与人类ALDH3A1相互作用的肽。系统地证明了一种优势肽(P1)与目标蛋白相互作用,并通过肽ELISA进一步验证。生物信息学分析表明在该蛋白表面有两个假定的P1结合位点,这暗示了其生物医学潜力,并且酶学研究证明了P1肽对hALDH3A1活性具有强大的抑制活性。此外,为了寻找潜在的与hALDH3A1相互作用的蛋白,BLASTp搜索表明数据库中没有蛋白质包含P1的全长氨基酸序列,但鉴定出了一系列包含P1部分序列的蛋白质,这些蛋白质可能是潜在的与hALDH3A1相互作用的伙伴。其中,蛋白激酶C结合蛋白1和通用转录因子II-I因其细胞定位和功能而成为备受关注的候选蛋白。总之,本研究鉴定出一种具有潜在生物医学应用价值的新型肽,并进一步提出了一系列蛋白质候选物,以供未来研究探索其作为可能的与hALDH3A1相互作用的伙伴。