Select RAS & KRAS Proteins by Category
Find assay-ready KRAS mutant proteins, nucleotide-loaded KRAS formats, biotinylated KRAS reagents, RAS-family GTPases, pathway proteins, and custom RAS protein services.
KRAS G12D Proteins
Recombinant KRAS G12D proteins for oncology research, binding assays, nucleotide exchange workflows, and drug discovery.
View KRAS G12D Proteins →KRAS G12C Proteins
KRAS G12C proteins for covalent inhibitor research, biochemical assays, and targeted oncology workflows.
View KRAS G12C Proteins →KRAS G12V Proteins
KRAS G12V proteins for RAS signaling studies, effector binding assays, and inhibitor screening.
View KRAS G12V Proteins →Nucleotide-Loaded KRAS Proteins
GDP-loaded and GppNHp-loaded KRAS proteins for defined nucleotide-state assay workflows.
View Nucleotide-Loaded KRAS →Biotinylated KRAS Proteins
Site-specifically biotinylated KRAS proteins for SPR, BLI, AlphaScreen, ELISA, and pull-down assays.
View Biotinylated KRAS →KRAS Effector & Regulatory Proteins
SOS1, RAF1-RBD, PI3Kα-RBD, RALGDS-RBD, NF1-GRD, SHP2, and related pathway proteins.
View Pathway Proteins →RAS-Family GTPases
KRAS, NRAS, HRAS, RALA, RALB, RHEB, and related small GTPase proteins.
View RAS-Family GTPases →KRAS Proteins Used in Published Research
KRAS proteins and RAS pathway reagents used in peer-reviewed assay development and drug discovery studies.
View Published-Use Proteins →Custom RAS Protein Services
Custom KRAS mutations, site-specific biotinylation, nucleotide loading, assay-ready formats, and bulk production.
Request Custom RAS Protein →RAS & KRAS Protein Selection Guide
Use this guide to select KRAS mutant proteins, nucleotide-loaded KRAS formats, biotinylated assay reagents, RAS-family GTPases, and KRAS pathway companion proteins for your workflow.
| Protein Group | Available Formats | Common Applications | Related Collection |
|---|---|---|---|
| KRAS G12D | Biotinylated, AviTag™, GDP-loaded, GppNHp-loaded | Nucleotide exchange assays, inhibitor screening, binding assays, oncology research | KRAS G12D Proteins |
| KRAS G12C | Biotinylated, AviTag™, GDP-loaded, GppNHp-loaded, Y96D-related formats | Covalent inhibitor workflows, KRAS drug discovery, nucleotide-state assays | KRAS G12C Proteins |
| KRAS G12V | Biotinylated, AviTag™, C-terminal biotinylated, no His-tag formats | Effector binding, RAS signaling studies, inhibitor screening | KRAS G12V Proteins |
| Nucleotide-loaded KRAS | GDP-loaded and GppNHp-loaded KRAS formats | Defined nucleotide-state assays, exchange workflows, effector binding, inhibitor profiling | Nucleotide-Loaded KRAS Proteins |
| Biotinylated KRAS | N-terminal and C-terminal site-specific biotinylation formats | SPR, BLI, AlphaScreen, ELISA, pull-down assays, streptavidin capture workflows | Biotinylated KRAS Proteins |
| KRAS effector and regulatory proteins | SOS1, RAF1-RBD, PI3Kα-RBD, RALGDS-RBD, NF1-GRD, SHP2, and related proteins | Pathway interaction assays, nucleotide exchange workflows, effector binding studies | KRAS Effector & Regulatory Proteins |
| RAS-family GTPases | KRAS, NRAS, HRAS, RALA, RALB, RHEB, and related small GTPases | Small GTPase pathway research, biochemical assays, binding studies, drug discovery | RAS-Family GTPases |
GDP-Loaded and GppNHp-Loaded KRAS Proteins
Defined nucleotide-loaded KRAS proteins help reduce preparation steps and improve consistency in nucleotide-state-dependent assay workflows.
GDP-Loaded KRAS
GDP-loaded KRAS proteins are useful for nucleotide exchange assays, SOS1-mediated exchange workflows, GDP-state studies, and experiments that begin from a defined inactive-state conformation.
GppNHp-Loaded KRAS
GppNHp-loaded KRAS proteins support active-state KRAS assays, effector binding studies, inhibitor profiling, and workflows requiring a stable GTP-like conformation.
KRAS Effector and Regulatory Proteins
Pair KRAS mutant proteins with pathway companion proteins for effector binding assays, nucleotide exchange workflows, pathway interaction studies, and drug discovery assay development.
Published Research Using Amid RAS-Pathway Proteins
Amid Biosciences' RAS-family proteins have been used in published research from leading academic and industry laboratories, including the lab of Prof. Kevan Shokat (UCSF/HHMI) — a pioneer in KRAS drug discovery whose work on the G12C switch-II cryptic pocket opened the modern era of direct RAS inhibition.
Our biotinylated KRAS mutant proteins and SOS1 have been used in high-throughput nucleotide exchange assays to characterize next-generation KRAS inhibitors and degraders.
- Morstein J, Bowcut V, Fernando M, et al. Targeting Ras-, Rho-, and Rab-family GTPases via a conserved cryptic pocket. Cell. 2024;187(22):6379–6392.e17. doi:10.1016/j.cell.2024.08.017
- Kidane M, Hoffman RM, Wolfe-Demarco JK, et al. Suite of Biochemical and Cell-Based Assays for the Characterization of Kirsten Rat Sarcoma (KRAS) Inhibitors and Degraders. ACS Pharmacol Transl Sci. 2024;7(12):3921–3934. doi:10.1021/acsptsci.4c00450
- Kage M, Hayashi R, Matsuo A, et al. Structure-activity relationships of middle-size cyclic peptides, KRAS inhibitors derived from an mRNA display. Bioorg Med Chem. 2024;110:117830. doi:10.1016/j.bmc.2024.117830
KRAS inhibitor and degrader assay development
Biotinylated KRAS mutant proteins and SOS1 were used in biochemical assay workflows for KRAS inhibitor and degrader characterization.
Pan-GTPase druggability research
RAS-family and related small GTPase reagents support research into conserved GTPase binding pockets and pathway-targeted drug discovery.
Need a Custom RAS Protein?
Request custom KRAS mutations, tag placement, site-specific biotinylation, GDP or GppNHp nucleotide loading, assay-ready formats, custom QC, and bulk production.
FAQ
Which KRAS mutation should I choose?
Choose the KRAS mutation that matches your biological model, assay target, or inhibitor program. KRAS G12D, G12C, and G12V are commonly used in oncology drug discovery and RAS pathway research.
When should I use GDP-loaded versus GppNHp-loaded KRAS?
GDP-loaded KRAS is useful when starting from a defined inactive-state conformation or running nucleotide exchange assays. GppNHp-loaded KRAS is useful for active-state workflows, effector binding studies, and GTP-like assay formats.
When should I choose biotinylated KRAS?
Biotinylated KRAS is useful for streptavidin-based capture workflows, including SPR, BLI, AlphaScreen, ELISA, pull-down assays, and related surface-based biochemical assays.
Do you offer C-terminally biotinylated KRAS?
Yes. Amid Biosciences offers site-specifically biotinylated KRAS formats, including C-terminally biotinylated constructs for workflows where N-terminal tag placement may not be preferred.
Can Amid Biosciences make custom KRAS mutants?
Yes. Custom RAS protein services are available for KRAS mutations, tag placement, nucleotide loading, assay-ready formats, custom QC, and bulk production.
Are these products for research use only?
Yes. These products are intended for research use only and are not intended for diagnostic or therapeutic use.
Table 1. KRAS and KRAS-related proteins by mutation type
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