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Cell|February 1, 1984
Glycosylation and processing of prepro-alpha-factor through the yeast secretory pathwayD Julius, R Schekman, J ThornerProceedings of the National Academy of Sciences of the United States of America|December 1, 1983
An MF alpha 1-SUC2 (alpha-factor-invertase) gene fusion for study of protein localization and gene expression in yeastS D Emr, R Schekman, M C Flessel, et al.Cell|March 1, 1983
Yeast alpha factor is processed from a larger precursor polypeptide: the essential role of a membrane-bound dipeptidyl aminopeptidaseD Julius, L Blair, A Brake, et al.Cell|July 1, 1984
Isolation of the putative structural gene for the lysine-arginine-cleaving endopeptidase required for processing of yeast prepro-alpha-factorD Julius, A Brake, L Blair, et al.Current Opinion in Cell Biology|August 1, 1992
Genetic and biochemical analysis of vesicular traffic in yeastR SchekmanCurrent Opinion in Cell Biology|July 17, 2001
ER export: public transportation by the COPII coachB Antonny, R SchekmanProceedings of the National Academy of Sciences of the United States of America|April 1, 1986
Interorganelle transfer and glycosylation of yeast invertase in vitroA Haselbeck, R SchekmanProceedings of the National Academy of Sciences of the United States of America|April 1, 1979
Secretion and cell-surface growth are blocked in a temperature-sensitive mutant of Saccharomyces cerevisiaeP Novick, R SchekmanThe EMBO Journal|September 1, 1989
Functional compartments of the yeast Golgi apparatus are defined by the sec7 mutationA Franzusoff, R SchekmanThe Journal of Biological Chemistry|July 5, 1988
The yeast SEC53 gene encodes phosphomannomutaseF Kepes, R SchekmanPageof 28