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43 results on '"COPII VESICLES"'

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1. SEC31a‐ATG9a Interaction Mediates the Recruitment of COPII Vesicles for Autophagosome Formation.

2. SEC31a‐ATG9a Interaction Mediates the Recruitment of COPII Vesicles for Autophagosome Formation

3. Identification and characterization of the COPII vesicle‐forming GTPase Sar1 in Chlamydomonas.

4. Identification and characterization of the COPII vesicle‐forming GTPase Sar1 in Chlamydomonas

5. YIPF6 controls sorting of FGF21 into COPII vesicles and promotes obesity

6. The C-terminus of the cargo receptor Erv14 affects COPII vesicle formation and cargo delivery.

7. Selenoprotein K contributes to CD36 subcellular trafficking in hepatocytes by accelerating nascent COPII vesicle formation and aggravates hepatic steatosis

8. Phosphoregulatory protein 14-3-3 facilitates SAC1 transport from the endoplasmic reticulum

9. Loss of TANGO1 Leads to Absence of Bone Mineralization

10. Loss of TANGO1 Leads to Absence of Bone Mineralization.

11. Function of the SNARE Ykt6 on autophagosomes requires the Dsl1 complex and the Atg1 kinase complex.

12. COPII vesicles and the expansion of the phagophore

13. YIPF6 controls sorting of FGF21 into COPII vesicles and promotes obesity.

14. Selective inhibition of protein secretion by abrogating receptor-coat interactions during ER export

15. How to Avoid a No-Deal ER Exit

16. Sec24 phosphorylation regulates autophagosome abundance during nutrient deprivation

17. Intracellular mechanisms of molecular recognition and sorting for transport of large extracellular matrix molecules.

18. Assembly of γ-secretase occurs through stable dimers after exit from the endoplasmic reticulum

19. Phosphoregulatory protein 14-3-3 facilitates SAC1 transport from the endoplasmic reticulum.

20. Loss of TANGO1 leads to absence of bone mineralization

21. ER and vacuoles: never been closer.

22. Selenoprotein K contributes to CD36 subcellular trafficking in hepatocytes by accelerating nascent COPII vesicle formation and aggravates hepatic steatosis.

23. Modulation of the secretory pathway by amino-acid starvation

24. Selective inhibition of protein secretion by abrogating receptor-coat interactions during ER export.

26. Elements proximal to and within the transmembrane domain mediate the organelle-to-organelle movement of bZIP28 under ER stress conditions.

27. Genetic Analysis of Yeast Sec24p Mutants Suggests Cargo Binding Is Not Co-operative during ER Export.

28. The Lysophospholipid Acyltransferase Antagonist CI-976 Inhibits a Late Step in COPII Vesicle Budding.

29. Sterol-regulated transport of SREBPs from endoplasmic reticulum to Golgi: Insig renders sorting signal in Scap inaccessible to COPII proteins.

30. Sterol-regulated transport of SREBPs from endoplasmic reticulum to Golgi: Oxysterols block transport by binding to Insig.

31. Cideb controls sterol‐regulated <scp>ER</scp> export of <scp>SREBP</scp> / <scp>SCAP</scp> by promoting cargo loading at <scp>ER</scp> exit sites

32. Modulation of the secretory pathway by amino-acid starvation

33. Autophagosome formation: Where the secretory and autophagy pathways meet

34. Die Bedeutung von Sec16 alternativem Spleißen für den COPII vermittelten Proteintransport in T-Zellen

35. Autophagosome formation: Where the secretory and autophagy pathways meet.

36. How to Avoid a No-Deal ER Exit.

37. ER and vacuoles : never been closer

39. Identification de nouveaux partenaires protéiques des récepteurs couplés aux protéines G contrôlant leur transport du reticulum endoplasmique à la membrane plasmique

40. Sec24 phosphorylation regulates autophagosome abundance during nutrient deprivation.

41. Intracellular mechanisms of molecular recognition and sorting for transport of large extracellular matrix molecules.

42. Multicopy suppressor analysis of thermosensitive YIP1 alleles implicates GOT1 in transport from the ER.

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