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Updated: Jun 22, 2025

A Protocol for Computer-Based Protein Structure and Function Prediction
Published on: November 3, 2011
ERAMER: A novel in silico tool for prediction of ERAP1 enzyme trimming
Anas Al-Okaily1, Razan Abu Khashabeh1, Osama Alsmadi1
1Department of Cell Therapy and Applied Genomics, King Hussein Cancer Center, Amman, Jordan.
Abstract:
MHC class I pathway consists of four main steps: proteasomal cleavage in the cytosol in which precursor proteins are cleaved into smaller peptides, which are then transported into the endoplasmic reticulum by the transporter associated with antigen processing, TAP, for further processing (trimming) from the N-terminal region by an ER resident aminopeptidases 1 (ERAP1) enzyme, to generate optimal peptides (8-10 amino acids in length) to produce a stable MHCI-peptide complex, that get transited via the Golgi apparatus to the cell surface for presentation to the cellular immune system. Several studies reported specificities related to the ERAP1 trimming process, yet there is no in silico tool for the prediction of the trimming process of the ERAP1 enzyme. In this paper, we provide and implement a prediction model for the trimming process of the ERAP1 enzyme.
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