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Nanobodies as allosteric modulators of Parkinson's disease-associated LRRK2.

  • Read more about Nanobodies as allosteric modulators of Parkinson's disease-associated LRRK2.

Longitudinal assessment of reactivity and affinity profile of anti-Jo1 autoantibodies to distinct HisRS domains and a splice variant in a cohort of patients with myositis and anti-synthetase syndrome.

  • Read more about Longitudinal assessment of reactivity and affinity profile of anti-Jo1 autoantibodies to distinct HisRS domains and a splice variant in a cohort of patients with myositis and anti-synthetase syndrome.

The MYC oncoprotein directly interacts with its chromatin cofactor PNUTS to recruit PP1 phosphatase.

  • Read more about The MYC oncoprotein directly interacts with its chromatin cofactor PNUTS to recruit PP1 phosphatase.

Resistance to kinase inhibition through shortened target engagement.

  • Read more about Resistance to kinase inhibition through shortened target engagement.

Evolutionary history of the p53 family DNA-binding domain: insights from an Alvinella pompejana homolog.

  • Read more about Evolutionary history of the p53 family DNA-binding domain: insights from an Alvinella pompejana homolog.

Stopping pandemics before they start: Lessons learned from SARS-CoV-2.

  • Read more about Stopping pandemics before they start: Lessons learned from SARS-CoV-2.

Post-transcriptional and Post-translational Modifications of Primary Cilia: How to Fine Tune Your Neuronal Antenna.

  • Read more about Post-transcriptional and Post-translational Modifications of Primary Cilia: How to Fine Tune Your Neuronal Antenna.

PRMT5 regulates ATF4 transcript splicing and oxidative stress response.

  • Read more about PRMT5 regulates ATF4 transcript splicing and oxidative stress response.

Development of novel urea-based ATM kinase inhibitors with subnanomolar cellular potency and high kinome selectivity.

  • Read more about Development of novel urea-based ATM kinase inhibitors with subnanomolar cellular potency and high kinome selectivity.

Kinase domain autophosphorylation rewires the activity and substrate specificity of CK1 enzymes.

  • Read more about Kinase domain autophosphorylation rewires the activity and substrate specificity of CK1 enzymes.

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