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Li Xie
ORCID
Publication Activity (10 Years)
Years Active: 2009-2023
Publications (10 Years): 2
Top Topics
Complex Diseases
High Throughput
Genome Wide
Gene Function Prediction
Top Venues
PLoS Comput. Biol.
CoRR
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Publications
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Li Xie
,
Lei Xie
Elucidation of genome-wide understudied proteins targeted by PROTAC-induced degradation using interpretable machine learning.
PLoS Comput. Biol.
19 (8) (2023)
Tian Cai
,
Li Xie
,
Muge Chen
,
Yang Liu
,
Di He
,
Shuo Zhang
,
Cameron Mura
,
Philip E. Bourne
,
Lei Xie
Exploration of Dark Chemical Genomics Space via Portal Learning: Applied to Targeting the Undruggable Genome and COVID-19 Anti-Infective Polypharmacology.
CoRR
(2021)
Lei Xie
,
Xiaoxia Ge
,
Hepan Tan
,
Li Xie
,
Yinliang Zhang
,
Thomas Hart
,
Xiaowei Yang
,
Philip E. Bourne
Towards Structural Systems Pharmacology to Study Complex Diseases and Personalized Medicine.
PLoS Comput. Biol.
10 (5) (2014)
Thomas Evangelidis
,
Philip E. Bourne
,
Li Xie
,
Lei Xie
An integrated workflow for proteome-wide off-target identification and polypharmacology drug design.
BIBM Workshops
(2012)
Li Xie
,
Thomas Evangelidis
,
Lei Xie
,
Philip E. Bourne
Drug Discovery Using Chemical Systems Biology: Weak Inhibition of Multiple Kinases May Contribute to the Anti-Cancer Effect of Nelfinavir.
PLoS Comput. Biol.
7 (4) (2011)
Sarah L. Kinnings
,
Li Xie
,
Kingston H. Fung
,
Richard M. Jackson
,
Lei Xie
,
Philip E. Bourne
Drugome and Its Polypharmacological Implications.
PLoS Comput. Biol.
6 (11) (2010)
Roger L. Chang
,
Li Xie
,
Lei Xie
,
Philip E. Bourne
,
Bernhard Ø. Palsson
Drug Off-Target Effects Predicted Using Structural Analysis in the Context of a Metabolic Network Model.
PLoS Comput. Biol.
6 (9) (2010)
Li Xie
,
Jerry Li
,
Lei Xie
,
Philip E. Bourne
Drug Discovery Using Chemical Systems Biology: Identification of the Protein-Ligand Binding Network To Explain the Side Effects of CETP Inhibitors.
PLoS Comput. Biol.
5 (5) (2009)
Lei Xie
,
Li Xie
,
Philip E. Bourne
A unified statistical model to support local sequence order independent similarity searching for ligand-binding sites and its application to genome-based drug discovery.
Bioinform.
25 (12) (2009)