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View Protein Complex Details

Complex Overview

From Publication: Gavin A.C. et al. (2006) Proteome survey reveals modularity of the yeast cell machinery. Nature. 2006 Mar 30;440(7084):631-6. Epub 2006 Jan 22.
Notes: From the published set of protein complexes (core proteins only)
Complex Size: 3 proteins

Complex Member Proteins

Cellular Component Analysis

Given the number of proteins in the complex (A), total proteins annotated with a given GO term (B), and the total number of annotated proteins (T); the p-value represents the chances of randomly having the number of proteins in the complex annotated with a specific GO term (I).

Only showing terms with a p-value less than or equal to 0.01.

GO Term

P-value

A

B

I

T

cellular bud neck 1.2346E-3 3 129 2 6292
cellular bud 2.0398E-3 3 166 2 6292
site of polarized growth 2.089E-3 3 168 2 6292
nuclear nucleosome 5.7116E-3 3 12 1 6292
nucleosome 5.7116E-3 3 12 1 6292

Biological Process Analysis

Given the number of proteins in the complex (A), total proteins annotated with a given GO term (B), and the total number of annotated proteins (T); the p-value represents the chances of randomly having the number of proteins in the complex annotated with a specific GO term (I).

Only showing terms with a p-value less than or equal to 0.01.

GO Term

P-value

A

B

I

T

M phase of mitotic cell cycle 1.2156E-3 3 128 2 6292
mitotic cell cycle 4.7773E-3 3 255 2 6292
M phase 6.3267E-3 3 294 2 6292
nucleosome assembly 7.6106E-3 3 16 1 6292
chromatin assembly 9.0332E-3 3 19 1 6292

Molecular Function Analysis

Given the number of proteins in the complex (A), total proteins annotated with a given GO term (B), and the total number of annotated proteins (T); the p-value represents the chances of randomly having the number of proteins in the complex annotated with a specific GO term (I).

Only showing terms with a p-value less than or equal to 0.01.

GO Term

P-value

A

B

I

T

histone binding 6.6614E-3 3 14 1 6292

YRC Informatics Platform - Version 3.0
Created and Maintained by: Michael Riffle