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Dynamics of domain coverage of the protein sequence universe

Date Issued
November 16, 2012
Author(s)
Rekapalli, Bhanu
Wuichet, Kristin  
Peterson, Gregory D.  
Zhulin, Igor B.  
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/48896
Abstract

Background


The currently known protein sequence space consists of millions of sequences in public databases and is rapidly expanding. Assigning sequences to families leads to a better understanding of protein function and the nature of the protein universe. However, a large portion of the current protein space remains unassigned and is referred to as its “dark matter”.

Results

Here we suggest that true size of “dark matter” is much larger than stated by current definitions. We propose an approach to reducing the size of “dark matter” by identifying and subtracting regions in protein sequences that are not likely to contain any domain.

Conclusions

Recent improvements in computational domain modeling result in a decrease, albeit slowly, in the relative size of “dark matter”; however, its absolute size increases substantially with the growth of sequence data.

Disciplines
Microbiology
Recommended Citation
BMC Genomics 2012, 13:634 doi:10.1186/1471-2164-13-634
Embargo Date
July 11, 2013
File(s)
Thumbnail Image
Name

1471_2164_13_634.pdf

Size

309.15 KB

Format

Adobe PDF

Checksum (MD5)

fd5d8256ba8ea5c87002e2330e8a155f


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