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Your search keyword '"Kalocsay, Marian"' showing total 170 results

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170 results on '"Kalocsay, Marian"'

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1. A spatiotemporal map of co-receptor signaling networks underlying B cell activation.

4. Time-resolved proteomics profiling of the ciliary Hedgehog response

5. Time-resolved proteomic profiling of the ciliary Hedgehog response reveals that GPR161 and PKA undergo regulated co-exit from cilia

6. Rad regulation of CaV1.2 channels controls cardiac fight-or-flight response

7. Time-resolved proteomic profiling of the ciliary Hedgehog response reveals that GPR161 and PKA undergo regulated co-exit from cilia

10. TYK2 as a novel therapeutic target in Alzheimer Disease

11. Nudt21 Controls Cell Fate by Connecting Alternative Polyadenylation to Chromatin Signaling

13. Discovery and resistance mechanism of a selective CDK12 degrader

16. Quantitative Proteomics of the Cancer Cell Line Encyclopedia

17. Targeting immunosuppressive macrophages overcomes PARP inhibitor resistance in BRCA1-associated triple-negative breast cancer

23. A spatiotemporal Notch interaction map from plasma membrane to nucleus

25. Automethylation-induced conformational switch in Clr4 (Suv39h) maintains epigenetic stability

26. HUWE1 Amplifies Ubiquitin Modifications to Broadly Stimulate Clearance of Proteins and Aggregates

30. A Spatiotemporal Notch Interaction Map from Membrane to Nucleus

37. RNA helicase DDX21 mediates nucleotide stress responses in neural crest and melanoma cells

38. Proteomic profiling of breast cancer cell lines and models

39. Targeting immunosuppressive macrophages overcomes PARP inhibitor resistance in BRCA1-associated triple-negative breast cancer

40. 860 Targeting immunosuppressive macrophages overcomes PARP-inhibitor resistance in BRCA1-associated triple-negative breast cancer

41. Multiplexed proteomics and imaging of resolving and lethal SARS-CoV-2 infection in the lung

43. Orphan nuclear receptor COUP-TFII drives the myofibroblast metabolic shift leading to fibrosis

46. Abstract A105: PARP inhibition modulates the infiltration, phenotype, and function of tumor-associated macrophages (TAMs) in BRCA-associated breast cancer and can be augmented by harnessing the antitumor potential of TAMs

47. Abstract P5-04-01: PARP inhibition modulates the infiltration, phenotype and function of tumor-associated macrophages (TAMs) in BRCA-associated breast cancer and can be augmented by harnessing the anti-tumor potential of TAMs

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