Metabolite glues as a means of purine sensing and chemotherapeutic response
Метаболические «клеи» как механизм распознавания пуринов и ответа на химиотерапию
2026-07-15
SCID: 54.1/ntkpu5aq
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PPAT–NUDT5 interactionmetabolite gluespurine biosynthesis feedbackpurine nucleotidesthiopurine chemotherapeutics
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Abstract (AI)
Abstract Molecular glues stabilize weak interactions to impart new functionalities to complexes 1–3 . Although molecular glues have been described in plant signalling and as human therapeutics 4,5 , it is unclear whether this modality provides endogenous regulation in human cells. Here we show that purine nucleotides are molecular glues that tether the rate-limiting enzyme in purine biosynthesis—phosphoribosyl pyrophosphate amidotransferase (PPAT)—to its inhibitor NUDT5. This mechanism allows cells to sense the levels of purines and to establish essential feedback control of their synthesis. We refer to such molecules as metabolite glues. Thiopurine chemotherapeutics 6 , which have been in clinical use since the 1950s, glue the same complex but adopt distinct orientations for enhanced function. Unlike most known glues, the PPAT–NUDT5 metabolite-glue pocket can adjust its conformation to notable compound alterations, enabling increased glue potency and improved on-target activity. We therefore identify endogenous metabolite glues as a mode of nutrient sensing that can be exploited for therapeutic benefit.
Key Findings
1
Endogenous metabolite glues constitute a nutrient-sensing regulatory mechanism that can be exploited for therapeutic benefit.
2
Purine nucleotides act as endogenous molecular glues that tether PPAT (rate-limiting purine biosynthesis enzyme) to its inhibitor NUDT5.
3
The PPAT–NUDT5 interaction via purine metabolite glues provides feedback control, allowing cells to sense purine levels and regulate purine synthesis.
4
The PPAT–NUDT5 metabolite-glue pocket is conformationally adaptable, tolerating notable compound alterations to increase glue potency and on-target activity.
5
Thiopurine chemotherapeutics also glue the PPAT–NUDT5 complex, adopting distinct orientations that enhance functional potency compared to endogenous metabolites.
Research Object
The PPAT–NUDT5 complex (phosphoribosyl pyrophosphate amidotransferase tethered to its inhibitor NUDT5) as mediated by purine metabolite glues
Research Subject
How purine nucleotides and thiopurine chemotherapeutics act as metabolite molecular glues to tether PPAT to NUDT5, enabling purine sensing, feedback control of purine biosynthesis, and modulation of glue potency and on-target activity via pocket conformational adaptability
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2026-07-15
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