Literature DB >> 25945573

Identification of local variations within secondary structures of proteins.

Prasun Kumar1, Manju Bansal1.   

Abstract

Secondary-structure elements (SSEs) play an important role in the folding of proteins. Identification of SSEs in proteins is a common problem in structural biology. A new method, ASSP (Assignment of Secondary Structure in Proteins), using only the path traversed by the C(α) atoms has been developed. The algorithm is based on the premise that the protein structure can be divided into continuous or uniform stretches, which can be defined in terms of helical parameters, and depending on their values the stretches can be classified into different SSEs, namely α-helices, 310-helices, π-helices, extended β-strands and polyproline II (PPII) and other left-handed helices. The methodology was validated using an unbiased clustering of these parameters for a protein data set consisting of 1008 protein chains, which suggested that there are seven well defined clusters associated with different SSEs. Apart from α-helices and extended β-strands, 310-helices and π-helices were also found to occur in substantial numbers. ASSP was able to discriminate non-α-helical segments from flanking α-helices, which were often identified as part of α-helices by other algorithms. ASSP can also lead to the identification of novel SSEs. It is believed that ASSP could provide a better understanding of the finer nuances of protein secondary structure and could make an important contribution to the better understanding of comparatively less frequently occurring structural motifs. At the same time, it can contribute to the identification of novel SSEs. A standalone version of the program for the Linux as well as the Windows operating systems is freely downloadable and a web-server version is also available at http://nucleix.mbu.iisc.ernet.in/assp/index.php.

Keywords:  ASSP; helical wheel; polyproline II (PPII) helix; protein secondary structure; wire diagrams; π-helix

Mesh:

Substances:

Year:  2015        PMID: 25945573     DOI: 10.1107/S1399004715003144

Source DB:  PubMed          Journal:  Acta Crystallogr D Biol Crystallogr        ISSN: 0907-4449


  7 in total

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7.  The structure of human Nocturnin reveals a conserved ribonuclease domain that represses target transcript translation and abundance in cells.

Authors:  Elizabeth T Abshire; Jennifer Chasseur; Jennifer A Bohn; Paul A Del Rizzo; Peter L Freddolino; Aaron C Goldstrohm; Raymond C Trievel
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  7 in total

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