ASD2023: towards the integrating landscapes of allosteric knowledgebase

Author:

He Jixiao12,Liu Xinyi12,Zhu Chunhao3,Zha Jinyin1,Li Qian12,Zhao Mingzhu12,Wei Jiacheng12,Li Mingyu12,Wu Chengwei124,Wang Junyuan14,Jiao Yonglai12,Ning Shaobo12,Zhou Jiamin124,Hong Yue12,Liu Yonghui12,He Hongxi14,Zhang Mingyang12,Chen Feiying12,Li Yanxiu12,He Xinheng12,Wu Jing12,Lu Shaoyong12ORCID,Song Kun5,Lu Xuefeng4,Zhang Jian1236ORCID

Affiliation:

1. State Key Laboratory of Medical Genomics, National Research Center for Translational Medicine at Shanghai, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine , Shanghai , China

2. Medicinal Chemistry and Bioinformatics Center, Shanghai Jiao Tong University School of Medicine , Shanghai  200025 , China

3. College of Pharmacy, Ningxia Medical University , 1160 Shengli Street, Yinchuan , Ningxia  750004 , China

4. Department of Assisted Reproduction, Shanghai Ninth People's Hospital, Shanghai Jiao-Tong University School of Medicine (SJTU-SM) , Shanghai  200011 , China

5. Nutshell Therapeutics , Shanghai  201210 , China

6. School of Pharmaceutical Sciences, Zhengzhou University , Zhengzhou  450001 , China

Abstract

Abstract Allosteric regulation, induced by perturbations at an allosteric site topographically distinct from the orthosteric site, is one of the most direct and efficient ways to fine-tune macromolecular function. The Allosteric Database (ASD; accessible online at http://mdl.shsmu.edu.cn/ASD) has been systematically developed since 2009 to provide comprehensive information on allosteric regulation. In recent years, allostery has seen sustained growth and wide-ranging applications in life sciences, from basic research to new therapeutics development, while also elucidating emerging obstacles across allosteric research stages. To overcome these challenges and maintain high-quality data center services, novel features were curated in the ASD2023 update: (i) 66 589 potential allosteric sites, covering > 80% of the human proteome and constituting the human allosteric pocketome; (ii) 748 allosteric protein–protein interaction (PPI) modulators with clear mechanisms, aiding protein machine studies and PPI-targeted drug discovery; (iii) ‘Allosteric Hit-to-Lead,’ a pioneering dataset providing panoramic views from 87 well-defined allosteric hits to 6565 leads and (iv) 456 dualsteric modulators for exploring the simultaneous regulation of allosteric and orthosteric sites. Meanwhile, ASD2023 maintains a significant growth of foundational allosteric data. Based on these efforts, the allosteric knowledgebase is progressively evolving towards an integrated landscape, facilitating advancements in allosteric target identification, mechanistic exploration and drug discovery.

Funder

National Key R&D Program of China

National Natural Science Foundation of China

Innovation Program of Shanghai Municipal Education Commission, China

Key Research and Development Program of Ningxia Hui Autonomous Region

innovative research team of high-level local universities in Shanghai

Natural Science Foundation of Ningxia

Starry Night Science Fund of Zhejiang University Shanghai Institute for Advanced Study

Pharmaceutical Biotechnology, Nanjing University, China

Shanghai Sailing Program

Publisher

Oxford University Press (OUP)

Subject

Genetics

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