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  2. Fisheries A6
  3. ICAR-Central Inland Fisheries Research Institute I2
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Please use this identifier to cite or link to this item: http://krishi.icar.gov.in/jspui/handle/123456789/26734
Title: Molecular characterization, constitutive expression and GTP binding mechanism of Cirrhinus mrigala (Hamilton, 1822) Myxovirus resistance (Mx) protein.
Other Titles: Not Available
Authors: Roy P.,
Ajaya Kumar Rout
Jitendra Maharana,
Deepak RanjanSahoo,
Soumya Prasad Panda,
Arttatrana Pal,
Kausalya Kumari Nayak,
Bijay Kumar Behera,
Basanta Kumar Das,
ICAR Data Use Licennce: http://krishi.icar.gov.in/PDF/ICAR_Data_Use_Licence.pdf
Author's Affiliated institute: ICAR::Central Inland Fisheries Research Institute
Published/ Complete Date: 2019-09-01
Project Code: Not Available
Keywords: Mx protein Cirrhinus
mrigala Expression
GTP binding mechanism
Molecular dynamics simulation
Publisher: Not Available
Citation: Not Available
Series/Report no.: Not Available;
Abstract/Description: Myxovirus resistance (Mx) proteins represents the subclass of the dynamin superfamily of large Guanosine triphosphates (GTPases), play esential role in intracellular vesicle trafficking, endocytosis, organelle homeostasis and mitochondria distribution. These proteins are key players of the vertebrate immune system, induced by type-I and type-III interferons (IFN) of infected host and inhibit viral replication by sequestering its nucleoprotein. In the present study, we report the sequencing and characterization of Cirrhinus mrigala Mx protein (CmMx) for the first time and observed its constitutive expression in different tissues for a period of fourteen days. The synthetic peptide, LSGVALPRGTGI, was dissolved in PBS and injected into a rabbit and the antibody raised against CmMx was used to study the level of its expression. The full length of the CmMx cDNA is 2244 bp with a molecular mass of 70.9 kDa and a predicted isoelectric point of 8.25. The 627 amino acids polypeptide formed of three main functional domains: N-terminal GTPase domain (GD), a middle domain (MD) and GTPase effector domain (GED) with carboxy terminal leucine zipper motif. The 3D models of CmMx protein was modeled based on available close structural homologs and further validated through molecular dynamics (MD) simulations. MD study revealed the importance of G-domain responsible for recognition of GTP, which perfectly corroborate with earlier studies. MM/PBSA binding free energy analysis displayed that van der Waals and electrostatic energy were the key driving force behind molecular recognition of GTP by CmMx protein. The results from this study will illuminate more lights into the ongoing research on myxovirus resistance protein and its role in inhibition of viral replication in other eukaryotic system as well.
Description: Not Available
ISSN: Not Available
Type(s) of content: Research Paper
Sponsors: Not Available
Language: English
Name of Journal: International Journal of Biological Macromolecules
NAAS Rating: 11.16
Volume No.: 136(1):
Page Number: 1258-1272.
Name of the Division/Regional Station: Not Available
Source, DOI or any other URL: https://doi.org/10.1016/j.ijbiomac.2019.06.161
URI: http://krishi.icar.gov.in/jspui/handle/123456789/26734
Appears in Collections:FS-CIFRI-Publication

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