39 results on '"Johnson, Alyssa E"'
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2. SVIP is a molecular determinant of lysosomal dynamic stability, neurodegeneration and lifespan.
3. A meiotic switch in lysosome activity supports spermatocyte development in young flies but collapses with age
4. VCP-dependent muscle degeneration is linked to defects in a dynamic tubular lysosomal network in vivo.
5. VCP promotes tTAF-target gene expression and spermatocyte differentiation by downregulating mono-ubiquitylated H2A
6. Rbp4-Gal4, a germline driver that activates in meiosis, reveals functions for VCP in spermatid development.
7. A density functional theory analysis of the adsorption and surface chemistry of inorganic iodine species on graphitea
8. A familial natural short sleep mutation promotes healthy aging and extends lifespan in Drosophila
9. VCP acts downstream of tTAFs to downregulate mono-ubiquitinated H2A and promote spermatocyte differentiation inDrosophila
10. Reproductive tradeoffs govern sexually dimorphic tubular lysosome induction in Caenorhabditis elegans
11. Branching Off: New Insight Into Lysosomes as Tubular Organelles
12. Degradative tubular lysosomes link pexophagy to starvation and early aging in C. elegans
13. Tubular lysosome induction couples animal starvation to healthy aging
14. Localization of the ubiquitin ligase Dma1 to the fission yeast contractile ring is modulated by phosphorylation
15. Phosphorylation in the intrinsically disordered region of F-BAR protein Imp2 regulates its contractile ring recruitment
16. CRISPR/Cas9-engineered Drosophila knock-in models to study VCP diseases
17. VACM-1/cul5 expression in vascular tissue in vivo is induced by water deprivation and its expression in vitro regulates aquaporin-1 concentrations
18. Resveratrol enhances anti-proliferative effect of VACM-1/cul5 in T47D cancer cells
19. Dma1 ubiquitinates the SIN scaffold, Sid4, to impede the mitotic localization of Plo1 kinase
20. Degradative tubular lysosomes link pexophagy to starvation and early aging in C. elegans.
21. Estrogen-dependent growth and estrogen receptor (ER)-α concentration in T47D breast cancer cells are inhibited by VACM-1, a cul 5 gene
22. Mutational analysis of VACM-1/cul5 exons in cancer cell lines
23. Relief of the Dma1-mediated checkpoint requires Dma1 autoubiquitination and dynamic localization
24. VCP-dependent muscle degeneration is linked to defects in a dynamic tubular lysosomal network in vivo
25. Author response: VCP-dependent muscle degeneration is linked to defects in a dynamic tubular lysosomal network in vivo
26. Cdk1 promotes cytokinesis in fission yeast through activation of the septation initiation network
27. CK1 Is Required for a Mitotic Checkpoint that Delays Cytokinesis
28. Dnt1 acts as a mitotic inhibitor of the spindle checkpoint protein dma1 in fission yeast
29. Polar opposites: Fine‐tuning cytokinesis through SIN asymmetry
30. Fission Yeast Dma1 Requires RING Domain Dimerization for Its Ubiquitin Ligase Activity and Mitotic Checkpoint Function
31. Dma1 ubiquitinates the SIN scaffold, Sid4, to impede the mitotic localization of Plo1 kinase
32. Resveratrol enhances anti-proliferative effect of VACM-1/cul5 in T47D cancer cells
33. A Global Census of Fission Yeast Deubiquitinating Enzyme Localization and Interaction Networks Reveals Distinct Compartmentalization Profiles and Overlapping Functions in Endocytosis and Polarity
34. Phosphorylation of VACM-1/Cul5 by Protein Kinase A Regulates Its Neddylation and Antiproliferative Effect
35. Neddylation and/or Phosphorylation of VACM‐1/cul‐5 protein is Required for its Regulation of Estrogen Receptor, ERα, concentration and Estrogen‐dependent Growth in T47D breast cancer cell line
36. Estrogen-dependent growth and estrogen receptor (ER)-α concentration in T47D breast cancer cells are inhibited by VACM-1, a cul 5 gene
37. Inhibition of Cell Growth in T47D Cancer Cell Line by VACM‐1/cul‐5 is Dependent on its Neddylation and Phosphorylation Status
38. Human SVIP is sufficient to stimulate tubular lysosomes and extend healthspan in well-fed Caenorhabditis elegans .
39. A familial natural short sleep mutation promotes healthy aging and extends lifespan in Drosophila .
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