BAIT

SED5

L000001861, YLR026C
cis-Golgi t-SNARE syntaxin; required for vesicular transport between the ER and the Golgi complex; binds at least 9 SNARE proteins
GO Process (4)
GO Function (1)
GO Component (3)
Saccharomyces cerevisiae (S288c)
PREY

SFT2

L000002950, YBL102W
Tetra-spanning membrane protein found mostly in the late Golgi; non-essential; can suppress some sed5 alleles; may be part of the transport machinery, but precise function is unknown; similar to mammalian syntaxin 5
GO Process (1)
GO Function (0)
GO Component (3)
Saccharomyces cerevisiae (S288c)

Phenotypic Suppression

A genetic interaction is inferred when mutation or over expression of one gene results in suppression of any phenotype (other than lethality/growth defect) associated with mutation or over expression of another gene.

Publication

The Roles of the SNARE Protein Sed5 in Autophagy in Saccharomyces cerevisiae.

Zou S, Sun D, Liang Y

Autophagy is a degradation pathway in eukaryotic cells in which aging proteins and organelles are sequestered into double-membrane vesicles, termed autophagosomes, which fuse with vacuoles to hydrolyze cargo. The key step in autophagy is the formation of autophagosomes, which requires different kinds of vesicles, including COPII vesicles and Atg9- containing vesicles, to transport lipid double-membranes to the phagophore assembly site ... [more]

Mol. Cells Sep. 20, 2017; (); [Pubmed: 28927260]

Throughput

  • Low Throughput

Ontology Terms

  • phenotype: autophagy (APO:0000074)

Related interactions

InteractionExperimental Evidence CodeDatasetThroughputScoreCurated ByNotes
SED5 SFT2
Dosage Rescue
Dosage Rescue

A genetic interaction is inferred when over expression or increased dosage of one gene rescues the lethality or growth defect of a strain that is mutated or deleted for another gene.

Low-BioGRID
162032
SFT2 SED5
Synthetic Lethality
Synthetic Lethality

A genetic interaction is inferred when mutations or deletions in separate genes, each of which alone causes a minimal phenotype, result in lethality when combined in the same cell under a given condition.

Low-BioGRID
158784

Curated By

  • BioGRID