Rapid de novo discovery of peptidomimetic affinity reagents for human angiotensin converting enzyme 2.
Genwei ZhangJoseph S BrownAnthony J QuartararoChengxi LiXuyu TanStephanie HannaSarah AntillaAmanda E CowferAndrei LoasBradley L PentelutePublished in: Communications chemistry (2022)
Rapid discovery and development of serum-stable, selective, and high affinity peptide-based binders to protein targets are challenging. Angiotensin converting enzyme 2 (ACE2) has recently been identified as a cardiovascular disease biomarker and the primary receptor utilized by the severe acute respiratory syndrome coronavirus 2. In this study, we report the discovery of high affinity peptidomimetic binders to ACE2 via affinity selection-mass spectrometry (AS-MS). Multiple high affinity ACE2-binding peptides (ABP) were identified by selection from canonical and noncanonical peptidomimetic libraries containing 200 million members (dissociation constant, K D = 19-123 nM). The most potent noncanonical ACE2 peptide binder, ABP N1 (K D = 19 nM), showed enhanced serum stability in comparison with the most potent canonical binder, ABP C7 (K D = 26 nM). Picomolar to low nanomolar ACE2 concentrations in human serum were detected selectively using ABP N1 in an enzyme-linked immunosorbent assay. The discovery of serum-stable noncanonical peptidomimetics like ABP N1 from a single-pass selection demonstrates the utility of advanced AS-MS for accelerated development of affinity reagents to protein targets.
Keyphrases
- angiotensin converting enzyme
- angiotensin ii
- mass spectrometry
- small molecule
- high throughput
- cardiovascular disease
- respiratory syndrome coronavirus
- capillary electrophoresis
- protein protein
- photodynamic therapy
- multiple sclerosis
- ms ms
- binding protein
- amino acid
- endothelial cells
- sars cov
- liquid chromatography
- type diabetes
- high resolution
- loop mediated isothermal amplification
- high performance liquid chromatography
- dna binding
- cardiovascular risk factors
- induced pluripotent stem cells
- light emitting