scispace - formally typeset
Search or ask a question
Author

Balasubramanian Venkatakrishnan

Other affiliations: University of Florida
Bio: Balasubramanian Venkatakrishnan is an academic researcher from Indiana University. The author has contributed to research in topics: Capsid & Hepatitis B virus. The author has an hindex of 11, co-authored 20 publications receiving 810 citations. Previous affiliations of Balasubramanian Venkatakrishnan include University of Florida.

Papers
More filters
Journal ArticleDOI
TL;DR: It is argued that the simplicity of the virion correlates with a complexity of functions for viral proteins, and it makes sense to engage the broader spectrum of Cp function.

201 citations

Journal ArticleDOI
TL;DR: This study is the first to physically document conformational changes in the VP1u region that likely facilitate its externalization from the capsid interior during infection and establishes the order of events in the escape of the AAV capsid from the endosome en route to the nucleus.
Abstract: The importance of the phospholipase A2 domain located within the unique N terminus of the capsid viral protein VP1 (VP1u) in parvovirus infection has been reported. This study used computational methods to characterize the VP1 sequence for adeno-associated virus (AAV) serotypes 1 to 12 and circular dichroism and electron microscopy to monitor conformational changes in the AAV1 capsid induced by temperature and the pHs encountered during trafficking through the endocytic pathway. Circular dichroism was also used to monitor conformational changes in AAV6 capsids assembled from VP2 and VP3 or VP1, VP2, and VP3 at pH 7.5. VP1u was predicted (computationally) and confirmed (in solution) to be structurally ordered. This VP domain was observed to undergo a reversible pH-induced unfolding/refolding process, a loss/gain of α-helical structure, which did not disrupt the capsid integrity and is likely facilitated by its difference in isoelectric point compared to the other VP sequences assembling the capsid. This study is the first to physically document conformational changes in the VP1u region that likely facilitate its externalization from the capsid interior during infection and establishes the order of events in the escape of the AAV capsid from the endosome en route to the nucleus.

136 citations

Journal ArticleDOI
TL;DR: Serotypes of adeno-associated virus (AAV), AAV1, AAV2, A AV5, and AAV8, were compared with respect to the physical properties of their capsids that influence thermodynamic stability to provide direction for future studies on entry and vector production.
Abstract: Icosahedral viral capsids are obligated to perform a thermodynamic balancing act. Capsids must be stable enough to protect the genome until a suitable host cell is encountered yet be poised to bind receptor, initiate cell entry, navigate the cellular milieu, and release their genome in the appropriate replication compartment. In this study, serotypes of adeno-associated virus (AAV), AAV1, AAV2, AAV5, and AAV8, were compared with respect to the physical properties of their capsids that influence thermodynamic stability. Thermal stability measurements using differential scanning fluorimetry, differential scanning calorimetry, and electron microscopy showed that capsid melting temperatures differed by more than 20°C between the least and most stable serotypes, AAV2 and AAV5, respectively. Limited proteolysis and peptide mass mapping of intact particles were used to investigate capsid protein dynamics. Active hot spots mapped to the region surrounding the 3-fold axis of symmetry for all serotypes. Cleavages also mapped to the unique region of VP1 which contains a phospholipase domain, indicating transient exposure on the surface of the capsid. Data on the biophysical properties of the different AAV serotypes are important for understanding cellular trafficking and is critical to their production, storage, and use for gene therapy. The distinct differences reported here provide direction for future studies on entry and vector production.

106 citations

Journal ArticleDOI
TL;DR: Hepatitis B virus is a virion where the envelope proteins have multiple structures, the envelope-capsid interaction is irregular, and the capsid is a dynamic compartment that actively participates in metabolism of the encapsidated genome and carries regulated signals for intracellular trafficking.
Abstract: Hepatitis B virus is one of the smallest human pathogens, encoded by a 3,200-bp genome with only four open reading frames. Yet the virus shows a remarkable diversity in structural features, often with the same proteins adopting several conformations. In part, this is the parsimony of viruses, where a minimal number of proteins perform a wide variety of functions. However, a more important theme is that weak interactions between components as well as components with multiple conformations that have similar stabilities lead to a highly dynamic system. In hepatitis B virus, this is manifested as a virion where the envelope proteins have multiple structures, the envelope-capsid interaction is irregular, and the capsid is a dynamic compartment that actively participates in metabolism of the encapsidated genome and carries regulated signals for intracellular trafficking.

104 citations

Journal ArticleDOI
27 Apr 2018-eLife
TL;DR: All-atom molecular dynamics simulations are leveraged to investigate the hepatitis B virus capsid without symmetry bias, enabling study of capsid flexibility and its implications for biological function and cryo-EM resolution limits.
Abstract: The hepatitis B virus capsid represents a promising therapeutic target. Experiments suggest the capsid must be flexible to function; however, capsid structure and dynamics have not been thoroughly characterized in the absence of icosahedral symmetry constraints. Here, all-atom molecular dynamics simulations are leveraged to investigate the capsid without symmetry bias, enabling study of capsid flexibility and its implications for biological function and cryo-EM resolution limits. Simulation results confirm flexibility and reveal a propensity for asymmetric distortion. The capsid's influence on ionic species suggests a mechanism for modulating the display of cellular signals and implicates the capsid's triangular pores as the location of signal exposure. A theoretical image reconstruction performed using simulated conformations indicates how capsid flexibility may limit the resolution of cryo-EM. Overall, the present work provides functional insight beyond what is accessible to experimental methods and raises important considerations regarding asymmetry in structural studies of icosahedral virus capsids.

75 citations


Cited by
More filters
Journal ArticleDOI
TL;DR: The main features of NAMD are reviewed, including the variety of options offered by NAMD for enhanced-sampling simulations aimed at determining free-energy differences of either alchemical or geometrical transformations and their applicability to specific problems.
Abstract: NAMDis a molecular dynamics program designed for high-performance simulations of very large biological objects on CPU- and GPU-based architectures. NAMD offers scalable performance on petascale parallel supercomputers consisting of hundreds of thousands of cores, as well as on inexpensive commodity clusters commonly found in academic environments. It is written in C++ and leans on Charm++ parallel objects for optimal performance on low-latency architectures. NAMD is a versatile, multipurpose code that gathers state-of-the-art algorithms to carry out simulations in apt thermodynamic ensembles, using the widely popular CHARMM, AMBER, OPLS, and GROMOS biomolecular force fields. Here, we review the main features of NAMD that allow both equilibrium and enhanced-sampling molecular dynamics simulations with numerical efficiency. We describe the underlying concepts utilized by NAMD and their implementation, most notably for handling long-range electrostatics; controlling the temperature, pressure, and pH; applying external potentials on tailored grids; leveraging massively parallel resources in multiple-copy simulations; and hybrid quantum-mechanical/molecular-mechanical descriptions. We detail the variety of options offered by NAMD for enhanced-sampling simulations aimed at determining free-energy differences of either alchemical or geometrical transformations and outline their applicability to specific problems. Last, we discuss the roadmap for the development of NAMD and our current efforts toward achieving optimal performance on GPU-based architectures, for pushing back the limitations that have prevented biologically realistic billion-atom objects to be fruitfully simulated, and for making large-scale simulations less expensive and easier to set up, run, and analyze. NAMD is distributed free of charge with its source code at www.ks.uiuc.edu.

1,215 citations

Journal ArticleDOI
TL;DR: The fundamentals of AAV and vectorology are discussed, focusing on current therapeutic strategies, clinical progress and ongoing challenges.
Abstract: Adeno-associated virus (AAV) vectors are the leading platform for gene delivery for the treatment of a variety of human diseases. Recent advances in developing clinically desirable AAV capsids, optimizing genome designs and harnessing revolutionary biotechnologies have contributed substantially to the growth of the gene therapy field. Preclinical and clinical successes in AAV-mediated gene replacement, gene silencing and gene editing have helped AAV gain popularity as the ideal therapeutic vector, with two AAV-based therapeutics gaining regulatory approval in Europe or the United States. Continued study of AAV biology and increased understanding of the associated therapeutic challenges and limitations will build the foundation for future clinical success.

1,041 citations

Journal ArticleDOI
01 Aug 2017-BioDrugs
TL;DR: This review will provide an overview of some important factors to consider in the use of AAV as a vector for gene therapy.
Abstract: There has been a resurgence in gene therapy efforts that is partly fueled by the identification and understanding of new gene delivery vectors. Adeno-associated virus (AAV) is a non-enveloped virus that can be engineered to deliver DNA to target cells, and has attracted a significant amount of attention in the field, especially in clinical-stage experimental therapeutic strategies. The ability to generate recombinant AAV particles lacking any viral genes and containing DNA sequences of interest for various therapeutic applications has thus far proven to be one of the safest strategies for gene therapies. This review will provide an overview of some important factors to consider in the use of AAV as a vector for gene therapy.

679 citations

Journal ArticleDOI
TL;DR: The best ebooks about Preparation and analysis of protein crystals that you can get for free here by download this Preparation And Analysis Of Protein Crystals and save to your desktop.
Abstract: The best ebooks about Preparation And Analysis Of Protein Crystals that you can get for free here by download this Preparation And Analysis Of Protein Crystals and save to your desktop. This ebooks is under topic such as preparation and analysis of protein crystals preparation and analysis of protein crystals amazon s3 preparation of protein crystals for x-ray structural study preparation analysis of large, flat crystals ca2 how to grow single crystals for x-ray analysis by solution monitoring preparation of derivative protein crystals via preparation and analysis of protein crystals by a chapter 1 preparation of 2d crystals of membrane maldi sample preparation south dakota state university introduction to protein crystallization kemisk institut facilities and methods for the high-throughput crystal preparation and analysis of large, flat crystals of ca(2 new crystal form of cytosolic chicken aspartate two-dimensional crystals of rhodopsin 91 sample preparation and mass-spectrometric characterization x-ray analysis of protein crystals with thin-plate morphology protein preparation, crystallization and preliminary x-ray of chemistry vol 261, no march 25, pp by of inc usa x-ray crystallography methods 2005 colgate university preliminary characterization of crystals of the protein protein x-ray crystallography methods influence of matrix solution conditions on the maldi-ms three-layer matrix/sample preparation method for maldi ms sample preparation for crystallization urine sediment guide idexx laboratories diagnÃÂ3stico protein preparation, crystallization and preliminary x-ray protein preparation, crystallization and preliminary x-ray crystal growth purià ̄¥cation, refolding, crystallization and supplementary materials and methods protein preparation a general protocol for the crystallization of membrane solubility & stability screen huji growth and characterization of lysozyme crystals in a general method for hyperquenching protein crystals statistical analysis of crystallization database links mass spectrometric analysis of mercury incorporation into characterization of the growth of 2d protein crystals on a protein spherulites for sustained release of interferon how to prepare ir samples? preparation of large-volume crystals for structure the impact of protein characterization in structural a high-pressure cryocooling method for protein crystals atomic-resolution structures from fragmented protein mass spectrometry of whole proteins eluted from sodium structural proteomics: prospects for high throughput chemistry 51 experiment 11 synthesis and analysis of aspirin

339 citations

Journal ArticleDOI
TL;DR: Development of standardised assays for novel biomarkers toward better defining hepatitis B virus cure should occur in parallel with development of novel antiviral and immune modulatory therapies such that approval of new treatments can be linked to the approval ofnew diagnostic assays used to measure efficacy or to predict response.

307 citations