Towards understanding the structure of the capsid of Banana Bunchy Top Virus
Venkataraman, S.; Sairam, S.; Ramasamy, S.; Handanahalli, S.
Show abstract
Banana is the major staple food crop for approximately 400 million people. Bunchy Top disease of Banana is one of the most devastating diseases caused by Banana Bunchy Top Virus (BBTV) that results in a significant loss of yield, stunting and bunchy appearance of leaves. While many isolates of BBTV from various regions of India have been characterized by different groups, no structural study exists for this important virus. To pursue structural studies, the pET28a clone of coat protein (CP) gene from BBTV isolate of Hill Banana grown in lower Pulney Hills (Virupakshi) of Tamilnadu was expressed in BL21 (DE3) pLysS. Purification of the CP was done using Ni-NTA affinity chromatography. In vitro capsid assembly studied using sucrose density gradient centrifugation suggested that the CP did not assemble as virus like particle (VLPs) but remained as smaller oligomers. Studies using dynamic light scattering (DLS) indicates that the purified protein is poly-dispersed represented majorly as pentamers. Studies using both homology modelling and ab initio structure determination gave useful insights into the probable fold of the CP suggesting it is a {beta}-sandwich fold similar to that seen in majority of plant viruses. In silico capsid reconstruction aided understanding of the quaternary organization of subunits in the capsid and molecular interactions present between the subunits. The location of aphid binding EAG motif was identified on the surface loops close to the pentameric axis indicating their role in vector mediated transmission.
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