SPC97/YHR172W Summary Help

SPC97 BASIC INFORMATION

Standard Name SPC97
Systematic Name YHR172W
Feature Type ORF, Verified
Description Component of the microtubule-nucleating Tub4p (gamma-tubulin) complex; interacts with Spc110p at the spindle pole body (SPB) inner plaque and with Spc72p at the SPB outer plaque (1, 2)
Name Description Spindle Pole Component
GO Annotations All SPC97 GO evidence and references
    View Computational GO annotations for SPC97
Molecular Function
Manually curated
Biological Process
Manually curated
Cellular Component
Manually curated
Mutant Phenotype All SPC97 Phenotype details and references
Classical genetics
overexpression
Large-scale survey
null
overexpression
repressible
Interactions SPC97 All interactions details and references
76 total interaction(s) for 14 unique genes/features.
Physical Interactions
  • Affinity Capture-MS: 14
  • Affinity Capture-Western: 26
  • Co-purification: 3
  • FRET: 7
  • Reconstituted Complex: 4
  • Two-hybrid: 11

Genetic Interactions
  • Dosage Lethality: 1
  • Dosage Rescue: 4
  • Synthetic Growth Defect: 2
  • Synthetic Lethality: 4

Sequence Information
ChrVIII:448335 to 450806 | ORF Map | GBrowse
Gbrowse
Last Update Coordinates: 2005-11-07 | Sequence: 1996-07-31
Subfeature details
Relative
Coordinates
Chromosomal
Coordinates
Most Recent Updates
Coordinates Sequence
CDS 1..2472 448335..450806 2005-11-07 1996-07-31
External Links All Associated Seq | Entrez Gene | Entrez RefSeq Protein | MIPS | UniProtKB
Primary SGDIDS000001215

SPC97 RESOURCES

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SGD ORF mapGBrowse
SGD ORF map
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  • Functional Analysis

Click on histogram for expression summary
Expression Summary histogram

REFERENCES CITED ON THIS PAGE [View Complete Literature Guide for SPC97]

1) Nguyen T, et al.  (1998) A genetic analysis of interactions with Spc110p reveals distinct functions of Spc97p and Spc98p, components of the yeast gamma-tubulin complex. Mol Biol Cell 9(8):2201-16
2) Knop M, et al.  (1997) The spindle pole body component Spc97p interacts with the gamma-tubulin of Saccharomyces cerevisiae and functions in microtubule organization and spindle pole body duplication. EMBO J 16(7):1550-64