ArticleEMBO molecular medicine2026
Inhibition of CDK12/CDK13-CYCLIN K rewires P-TEFb signaling to reverse HIV-1 latency and modulate cellular gene expression.
Article in EMBO molecular medicine, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Authors and funding
12 authors.
Funding
Abstract
Persistent HIV-1 latency in long-lived CD4⁺ T-cell reservoirs remains a major obstacle towards viral eradication. Current antiretroviral therapy (cART) exhibits limited clinical efficacy, highlighting the need for new therapeutic interventions. Here, we identify the CDK12/CDK13-Cyclin K (CCNK) complex as a regulator of HIV-1 latency. Pharmacological inhibition of CDK12/CDK13-CCNK with the SR-4835 inhibitor robustly reversed HIV-1 latency in the absence of additional stimuli, both in T cell models and in primary CD4⁺ T cells from people living with HIV-1 receiving cART. Targeting of CDK12/CDK13-CCNK with SR-4835 further synergized HIV-1 latency reversal and enhanced viral reactivation when co-treated with established Latency Reversal Agents. Mechanistically, CDK12/CDK13-CCNK inhibition promoted the release of P-TEFb (CDK9/CYCLIN T) from its inhibitory 7SK snRNP complex, resulting in increased recruitment of RNA polymerase II, CDK9 activation, and remodeled chromatin that overall drove productive HIV-1 transcription. Beyond HIV-1 reactivation, our findings reveal a previously unrecognized compensatory interplay between transcriptional kinases that activate gene expression, thereby rewiring cellular transcriptional programs. Together, this study identifies CDK12/CDK13-CCNK complex as a therapeutic target for HIV-1 latency reversal and provides a mechanistic rationale for improving strategies aimed at achieving an HIV cure.
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Registered trials
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