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42 results on '"cdr2"'

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1. Roles of CDR2 and CDR2L in Anti-Yo Paraneoplastic Cerebellar Degeneration: A Literature Review.

2. Case report: paraneoplastic cerebellar degeneration associated with anti-Yo antibody successfully treated with ofatumumab.

3. Case report: paraneoplastic cerebellar degeneration associated with anti-Yo antibody successfully treated with ofatumumab

4. Molecular dissection studies of TAC1, a transcription activator of Candida drug resistance genes of the human pathogenic fungus Candida albicans.

5. CDR1, CDR2, MDR1 and ERG11 expression in azole resistant Сandida albicans isolated from HIV-infected patients in city of Moscow

6. Studying the characteristics of nanobody CDR regions based on sequence analysis in combination with 3D structures

7. Molecular dissection studies of TAC1, a transcription activator of Candida drug resistance genes of the human pathogenic fungus Candida albicans

8. Investigation of fluconazole susceptibility to Candida albicans by MALDI-TOF MS and real-time PCR for CDR1, CDR2, MDR1 and ERG11

9. In Candida glabrata , ERMES Component GEM1 Controls Mitochondrial Morphology, mtROS, and Drug Efflux Pump Expression, Resulting in Azole Susceptibility.

10. Studying the characteristics of nanobody CDR regions based on sequence analysis in combination with 3D structures.

11. Investigation of fluconazole susceptibility to Candida albicans by MALDI-TOF MS and real-time PCR for CDR1, CDR2, MDR1 and ERG11.

12. CDR2 is a dynein adaptor recruited by kinectin to regulate ER sheet organization.

13. Phosphoinositide-Dependent Protein Kinases Regulate Cell Cycle Progression Through the SAD Kinase Cdr2 in Fission Yeast

14. Phosphoinositide-Dependent Protein Kinases Regulate Cell Cycle Progression Through the SAD Kinase Cdr2 in Fission Yeast.

15. Antifungal Effects of Voriconazole-Loaded Nano-Liposome on Fluconazole-Resistant Clinical Isolates of Candida albicans, Biological Activity and ERG11, CDR1, and CDR2 Gene Expression.

16. MicroRNA 452 regulates ASB8, NOL8, and CDR2 expression in colorectal cancer cells.

17. Molecular Aspect of Drug Resistance in Candida albicans Isolates of Women with Vulvovaginal Candidiasis.

18. Human Transcriptome Array Analysis Identifies CDR2 as a Novel Suppressed Gene for Kawasaki Disease

19. Stable Pom1 clusters form a glucose-modulated concentration gradient that regulates mitotic entry

20. Phosphatases Generate Signal Specificity Downstream of Ssp1 Kinase in Fission Yeast.

21. The fission yeast cell size control system integrates pathways measuring cell surface area, volume, and time.

22. Antifungal drug susceptibility profiles and molecular mechanisms of azole resistance in Candida blood stream isolates.

23. Molecular control of the Wee1 regulatory pathway by the SAD kinase Cdr2.

24. Regulation of cell size and Wee1 kinase by elevated levels of the cell cycle regulatory protein kinase Cdr2.

25. Characterization of Mid1 domains for targeting and scaffolding in fission yeast cytokinesis.

26. CDR2 antigen and Yo antibodies.

27. Persistent Candida albicans colonization and molecular mechanisms of azole resistance in autoimmune polyendocrinopathy–candidiasis–ectodermal dystrophy (APECED) patients.

28. Antibody to CCDC104 is associated with a paraneoplastic antibody to CDR2 (anti-Yo).

29. Yo antibodies in ovarian and breast cancer patients detected by a sensitive immunoprecipitation technique.

30. Directed evolution of human T cell receptor CDR2 residues by phage display dramatically enhances affinity for cognate peptide-MHC without increasing apparent cross-reactivity.

31. Stable Pom1 clusters form a glucose-modulated concentration gradient that regulates mitotic entry

32. Multi-phosphorylation reaction and clustering tune Pom1 gradient mid-cell levels according to cell size

33. Human Transcriptome Array Analysis Identifies CDR2 as a Novel Suppressed Gene for Kawasaki Disease.

34. Reprogramming Cdr2-Dependent Geometry-Based Cell Size Control in Fission Yeast

35. Paraneoplastic cerebellar degeneration with anti-Yo antibodies associated with metastatic uveal melanoma.

36. Persistent Candida albicans colonization and molecular mechanisms of azole resistance in autoimmune polyendocrinopathy-candidiasis-ectodermal dystrophy (APECED) patients

37. Caracterización de los mecanismos de resistencia a azoles en aislados clínicos chilenos de Candida albicans

38. Caracterización de los mecanismos de resistencia a azoles en aislados clínicos chilenos de Candida albicans

39. Spatio-temporal control of cell division in fission yeast by Cdr2 medial cortical nodes

40. Reprogramming Cdr2-Dependent Geometry-Based Cell Size Control in Fission Yeast.

42. Transcriptional Regulation of Azole Antifungal Resistance in Candida albicans

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