Homology modelling of dipteran specific Cry proteins of Bt
Details
Physico-chemical characterization of 4 cry proteins was done and interpreted the properties such as molecular weight, pI, EC, AI, GRAVY, amino acid composition and instability index. The highest GRAVY and AI value were found in Cry4Aa (0.827) and cry2Aa 1(84.53). Prediction of motifs, patterns, disulfide bridges and secondary structure, transmembrane regions and domains of Cry proteins were performed for functional characterization. Four template sequences (1I5P, ADL6, 2C9K and 1W99) were used for homology modeling (Swiss Model and EsyPred3D) to predict the 3D structure. The LG score for 1I5P, ADL6, 2C9K and 1W99 template shown in Swissmodel and EsyPred was extremely a good model. Active sites of the protein was determined by CASTp server and ranged from 83-239. The pocket area and volume ranged from 422.9 - 5828 and 518.1-3719.2, respectively. The validation for structure models was performed by using PROCHECK. The models were further checked with WHAT IF. Both the structures were analyzed using ProFunc tool which showed to have different functions as they had different structures and active sites. Thereby the structure plays a vital role in determining its function.
Autorentext
Gurusubramanian Guruswami, PhD:Studied Zoology at University of Madras. Associate Professor at Mizoram University, Tanhril, Aizawl, Mizoram, India.Vikas Kumar Roy, PhD:Studied Zoology at Banaras Hindu University.Assistant Professor at Mizoram University, Tanhril, Aizawl, Mizoram, India.Lalrempuii, M.Sc: Studied Zoology at Mizoram University.
Weitere Informationen
- Allgemeine Informationen
- Sprache Englisch
- Herausgeber LAP LAMBERT Academic Publishing
- Gewicht 119g
- Untertitel Physicochemical and functional characterization, secondary structure prediction, model building and validation
- Autor Gurusubramanian Guruswami , Vikas Kumar Roy , Lalrem Puii
- Titel Homology modelling of dipteran specific Cry proteins of Bt
- Veröffentlichung 07.07.2014
- ISBN 3659570516
- Format Kartonierter Einband
- EAN 9783659570513
- Jahr 2014
- Größe H220mm x B150mm x T5mm
- Anzahl Seiten 68
- GTIN 09783659570513