Target intelligence / Profile preview

Abelson tyrosine kinase fusion protein ATP-binding site (within BCR–ABL1) (ABL1 ATP-binding site (within BCR–ABL1), often referenced as part of BCR–ABL1 or BCR–ABL)

Target
ABL1 ATP-binding site (within BCR–ABL1), often referenced as part of BCR–ABL1 or BCR–ABL
Molecular classification
Enzyme (protein kinase, specifically tyrosine kinase), Fusion protein (BCR–ABL1 is a fusion of BCR and ABL1 genes)
01

Overview

The ATP-binding site of BCR–ABL1 is formed at the interface of the protein’s kinase domain, specifically between the activation loop (A-loop) and the phosphate-binding loop (P-loop). Binding of ATP to this pocket enables the BCR–ABL1 fusion protein to phosphorylate tyrosine residues on substrate proteins, driving constitutive proliferation and anti-apoptotic survival signals in leukemic cells. Tyrosine kinase inhibitors (TKIs) developed for CML act by competitively occupying the ATP-binding site, effectively shutting down aberrant downstream signaling. Mutations within this site, notably T315I, alter drug binding and create therapeutic challenges. The ATP-binding site’s structural dynamics and interactions underlie both CML pathogenesis and TKI-based therapeutic strategy.

Other names
BCR–ABL1 kinase active siteBCR–ABL tyrosine kinase ATP pocketBCR–ABL1 ATP pocketBCR–ABL kinase domain ATP-binding pocketAbl domain ATP-binding siteBCR–ABL1 KD active site
02

Mechanism of action

Competitive inhibition: TKIs bind the ATP-binding site, preventing ATP from binding and thereby blocking phosphorylation of substrates. Allosteric inhibition (for some drugs like asciminib): binds a distant site to modulate ATP site conformation, not direct competition.

03

Biological functions

Signal transduction (downstream phosphorylation of multiple substrates)Cell proliferation (drives leukemic cell growth)Apoptosis regulation (suppresses apoptosis in CML cells)
04

Disease associations

Cancer (key driver in chronic myeloid leukemia and some acute lymphoblastic leukemias)
05

Safety considerations

Resistance mutations (e.g., T315I, affecting ATP-binding site, leading to TKI resistance)Off-target effects (arising from non-specific kinase inhibition)Long-term toxicity (vascular, hepatic, pulmonary, etc. depending on TKI)
06

Interacting drugs

6 more in the full profile.

07

Biomarkers

BCR–ABL1 transcript quantification (monitoring disease burden/efficacy)BCR–ABL1 kinase domain mutation profiling (especially T315I mutation, which confers resistance and guides drug choice)

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