宿主腸管上皮バリア機能に必須なビリンとの相互作用を有するBlastocystis hominisの病原因子同定のための酵母ツーハイブリッドスクリーニング
Yani Zhang1, Yuanfeng Wang1, Tianmeng Song1
1Xinxiang Key Laboratory of Pathogenic Biology, Department of Pathogenic Biology, School of Basic Medical Sciences, Xinxiang Medical University, Xinxiang, 453003, Henan, PR China.
Abstract:
Blastocystis hominis (B. hominis), one of the most common intestinal protozoa infecting humans worldwide, is associated with gastrointestinal disorders, yet it remains unclear whether it secretes virulence factors that interact with villin, a key cytoskeletal protein essential for brush border homeostasis and epithelial barrier function. In this study, we constructed a high-quality normalized full-length B. hominis cDNA library (capacity 5.2 × 10⁶ CFU; recombination rate 95.8%) and performed yeast two-hybrid screening using villin as bait. Thirty initial positive clones were obtained, and sequencing combined with BLAST identified 24 unique prey proteins. Among these, 11 were in-frame (ORF-true), 8 proteins were selected for pairwise verification, and 6 proteins were ultimately confirmed to specifically interact with villin, including pyridine nucleotide transhydrogenase (XP_014525634), an ATP/GTP-binding protein-like molecule (OAO14457), and four hypothetical proteins (XP_012896330, XP_012895057, XP_012893676, XP_012894607). GO and KEGG analyses performed on the 24 prey proteins indicated enrichment in cellular metabolic processes and membrane-associated pathways. These findings identify multiple B. hominis proteins capable of interacting with villin, provide new insights into parasite-induced epithelial damage, and offer potential biomarkers and candidate targets for drug and vaccine development against blastocystosis.
関連する概念動画
Yeast Signaling
Factors Affecting Protein-Drug Binding: Drug Interactions
Displacement interactions can have varying outcomes, ranging from toxicity to virtually...
Hybrid Zones
Transcription Factors
Factors Affecting Renal Clearance: Drug Distribution and Drug Interactions
One important factor is the relationship between renal clearance and the apparent volume of distribution. Renal clearance tends to be inversely proportional to the apparent volume of distribution. Drugs with an extensive distribution volume or those...
Hybridization of Atomic Orbitals I


