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Structural Differences in KIR3DL1 and LILRB1 Interaction with HLA-B and the Loading Peptide Polymorphisms: In Silico Evidences
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Similar Items: Structural Differences in KIR3DL1 and LILRB1 Interaction with HLA-B and the Loading Peptide Polymorphisms: In Silico Evidences
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Issue 15:1 (1-169)
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Issue 16:1 (1-102)
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Issue 17:1 (1-193)
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Issue 18:1 (1-98)
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Issue 19:1 (1-149)
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Issue 20:1 (1-281)
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IsoPepTracker: An interactive web application for peptide-driven isoform analysis
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Linking reduced prefrontal microcircuit inhibition in schizophrenia to EEG biomarkers in silico
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Deliverable D7.1 Project management guide
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Retracted: A Study on the Influence of Interactivity on Behavior Intention in Platform B2C Model
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Identification of Plant Homologues of Dual Specificity Yak1-Related Kinases
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PollinERA Deliverable - D7.1 Data Management Plan
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PepAnno: A structure-aware deep learning framework for bioactive peptide prediction, structural visualization, and physicochemical profiling
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Paper 1: A Lifecycle-Oriented Taxonomy of Open-Source Tools for Machine Learning
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Evaluation of MCF-7 Breast Cancer Cell Cytotoxic and Antioxidant Activities of Peptide Fractions from Symbiotic Bacteria of Jellyfish Catostylus sp.
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Graph-Theoretic Models of Mutations in the Nucleotide Binding Domain 1 of the Cystic Fibrosis Transmembrane Conductance Regulator
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Early Autism Spectrum Disorder Detection Using SMOTE-Enhanced 1D-CNN and Behavioral Screening Data
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Data-driven model reveals increased stability of CAG-expanded huntingtin RNA due to MID1 binding
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Structural and dynamic basis of NOD2 tandem CARD association and NOD1/2–RIP2 signaling complexes
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Intelligent Load Balancing Framework for Distributed Big Data Processing System
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Impacts of the Load Models on Optimal Planning of Distributed Generation in Distribution System
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Online Load and Leakage Estimation in Hydraulic Pitch System for Wind Turbines
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JOURNAL OF COMPUTER SCIENCE AND ITS APPLICATIONS: VOLUME 28, NO.1, JUNE 2021
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