一二三四区视频,亚洲少妇熟女色,日本久热无码视频网,欧美国产日韩大尺度,亚洲a视频,久久少妇一区二区,日韩999无码视频,刺激久久久久久久,啊啊啊啊不要啊在线

ChemicalBook >> journal list >> Scientific Reports >>article
Scientific Reports

Scientific Reports

IF: 3.8
Download PDF

A novel approach for target deconvolution from phenotype-based screening using knowledge graph

Published:18 January 2025 DOI: 10.1038/s41598-025-86166-w PMID: 39827292
Xiaohong Wang,?Meifang Zhang,?Jianliang Xu,?Xin Li,?Jing Xiong,?Haowei Cao,?Fangkun Dou,?Xue Zhai,?Hua Sun

Abstract

Deconvoluting drug targets is crucial in modern drug development, yet both traditional and artificial intelligence (AI)-driven methods face challenges in terms of completeness, accuracy, and efficiency. Identifying drug targets, especially within complex systems such as the p53 pathway, remains a formidable task. The regulation of this pathway by myriad stress signals and regulatory elements adds layers of complexity to the discovery of effective p53 pathway activators. Recent insights into p53 activation have led to two main screening strategies for p53 activators. The target-based approach focuses on p53 and its regulators (MDM2, MDMX, USP7, Sirt proteins), but requires separate systems for each target and may miss multi-target compounds. Phenotype-based screening can reveal new targets but involves a lengthy process to elucidate mechanisms and targets, hindering drug development. Knowledge graphs have emerged as powerful tools that offer strengths in link prediction and knowledge inference to address these issues. In this study, we constructed a protein-protein interaction knowledge graph (PPIKG) and pioneered an integrated drug target deconvolution system that combines AI with molecular docking techniques. Analysis based on the PPIKG narrowed down candidate proteins from 1088 to 35, significantly saving time and cost. Subsequent molecular docking led us to pinpoint USP7 as a direct target for the p53 pathway activator UNBS5162. Leveraging knowledge graphs and a multidisciplinary approach allows us to streamline the laborious and expensive process of reverse targeting drug discovery through phenotype screening. Our findings have the potential to revolutionize drug screening and open new avenues in pharmacological research, increasing the speed and efficiency of pursuing novel therapeutics. The code is available at? https://github.com/Xiong-Jing/PPIKG .

Substances (4)

Materials
Procduct Name CAS Molecular Formula Supplier Price
UNBS-5162 956590-23-1 C17H18N4O3 105 suppliers $45.00-$2000.00
UNBS-5162 956590-23-1 C17H18N4O3 105 suppliers $45.00-$2000.00
UNBS-5162 956590-23-1 C17H18N4O3 105 suppliers $45.00-$2000.00
UNBS-5162 956590-23-1 C17H18N4O3 105 suppliers $45.00-$2000.00

Similar articles

IF:6.2

344-OR: The MOTS-c/CK2 Pathway Is a Novel Molecular Target for Type 2 Diabetes in East Asians

Diabetes HIROSHI KUMAGAI, SU JEONG KIM,etc Published: 19 July 2024
IF:2.3

Use of a molecular beacon based fluorescent method for assaying uracil DNA glycosylase (Ung) activity and inhibitor screening

Biochemistry and Biophysics Reports Avani Mehta , Prateek Raj ,etc Published: 1 July 2021
新疆| 历史| 隆林| 龙泉市| 云南省| 丹凤县| 江孜县| 门源| 神农架林区| 峡江县| 宁海县| 耒阳市| 徐汇区| 蓝山县| 井研县| 三台县| 镶黄旗| 宁都县| 获嘉县| 小金县| 莱芜市| 琼中| 雅江县| 四平市| 台东市| 泗洪县| 白水县| 南华县| 安庆市| 昌江| 锡林浩特市| 巴林右旗| 瑞丽市| 江华| 阿克苏市| 赣榆县| 阳朔县| 汾西县| 巩义市| 喀喇沁旗| 泽库县|