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Peptide Mapping Using Multienzyme Digestion Strategies Integrated with LC-HRMS Workflow: A Case Study.
Deep Maheshwari1, Devendra Badgujar1, Gulshan Kumar1
1Department of Pharmaceutical Analysis, National Institute of Pharmaceutical Education and Research-Ahmedabad (NIPER-A), India.
Summary
A new multienzyme peptide mapping workflow enhances structural verification for peptide therapeutics. This method achieves full sequence coverage for key antidiabetic peptides, ensuring accurate primary structure assessment.
Area of Science:
- Pharmaceutical Analysis
- Biochemistry
- Analytical Chemistry
Background:
- Peptide therapeutics offer significant therapeutic potential but present development challenges due to structural complexity.
- Advanced analytical techniques, including peptide mapping, are crucial for identifying peptide primary structure and demonstrating structural similarity.
- Regulatory agencies like the FDA and EMA recommend peptide mapping for structural verification.
Purpose of the Study:
- To describe a novel multienzyme peptide mapping workflow designed to improve sequence coverage and structural verification of peptide therapeutics.
- To demonstrate the workflow's effectiveness using exenatide and H-GLP-1 as model systems.
Main Methods:
- Integration of multienzymatic digestion with complementary specificities to generate diverse peptide maps.
- Separation using a Waters XBridge Peptide BEH C18 column and gradient elution.
- High-resolution Liquid Chromatography-Mass Spectrometry (LC-HRMS) with Orbitrap detection for precise peptide fragment identification (<5 ppm mass accuracy).
Main Results:
- Full sequence coverage was achieved for exenatide and H-GLP-1 by combining peptide maps generated with trypsin, Glu-C, and chymotrypsin.
- The workflow applied to a GLP-1 analog yielded over 95% sequence coverage and confirmed intact mass.
- Precise peptide fragment identification was obtained using high-resolution MS/MS data.
Conclusions:
- The described multienzyme peptide mapping workflow provides a reliable and stepwise approach for structural verification of peptide therapeutics.
- This method enables confident assessment of the primary structure of peptides like exenatide and H-GLP-1.
- The workflow enhances sequence coverage and structural confirmation, addressing key challenges in peptide drug development.

