92 research outputs found

    Efficient control flow quantification

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    Plant-made polio type 3 stabilized VLPs—a candidate synthetic polio vaccine

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    Poliovirus (PV) is the causative agent of poliomyelitis, a crippling human disease known since antiquity. PV occurs in two distinct antigenic forms, D and C, of which only the D form elicits a robust neutralizing response. Developing a synthetically produced stabilized viruslike particle (sVLP)-based vaccine with D antigenicity, without the drawbacks of current vaccines, will be a major step towards the final eradication of poliovirus. Such a sVLP would retain the native antigenic conformation and the repetitive structure of the original virus particle, but lack infectious genomic material. In this study, we report the production of synthetically stabilized PV VLPs in plants. Mice carrying the gene for the human PV receptor are protected from wild-type PV when immunized with the plant-made PV sVLPs. Structural analysis of the stabilized mutant at 3.6 Ă… resolution by cryo-electron microscopy and single particle reconstruction reveals a structure almost indistinguishable from wild-type PV3

    Insights into Minor Group Rhinovirus Uncoating: The X-ray Structure of the HRV2 Empty Capsid

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    Upon attachment to their respective receptor, human rhinoviruses (HRVs) are internalized into the host cell via different pathways but undergo similar structural changes. This ultimately results in the delivery of the viral RNA into the cytoplasm for replication. To improve our understanding of the conformational modifications associated with the release of the viral genome, we have determined the X-ray structure at 3.0 Ă… resolution of the end-stage of HRV2 uncoating, the empty capsid. The structure shows important conformational changes in the capsid protomer. In particular, a hinge movement around the hydrophobic pocket of VP1 allows a coordinated shift of VP2 and VP3. This overall displacement forces a reorganization of the inter-protomer interfaces, resulting in a particle expansion and in the opening of new channels in the capsid core. These new breaches in the capsid, opening one at the base of the canyon and the second at the particle two-fold axes, might act as gates for the externalization of the VP1 N-terminus and the extrusion of the viral RNA, respectively. The structural comparison between native and empty HRV2 particles unveils a number of pH-sensitive amino acid residues, conserved in rhinoviruses, which participate in the structural rearrangements involved in the uncoating process

    On liberating programs from the von neumann architecture via event-based modularization

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    From the early days of computers, researchers have been trying to invent effective and efficient means for expressing software systems through the introduction of new programming languages. In the early days, due to the limitations of the technology, the abstractions of the programming languages were conceptually close to the abstractions of the von Neumann based realization platforms. With the advancement of the technology, computers have been increasingly applied for complex problems in different application domains. This required the challenge of designing programming languages that resemble more the semantics of software rather than the concepts of underlying machinery. To this aim, various new language concepts, such as object-oriented, aspect-oriented, and event-based languages have been introduced. While these languages were successful in enhancing the expression power of languages towards more semantic concerns of application domains, they fail in short in representing emergent behavioral patterns of software effectively. We outline a set of requirements to overcome these shortcomings, and explain the concept of event-based modularization as a possible solution

    A New Approach in Object-Based Knowledge Representation: The AROM System

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    Panel: The Next 700 Distributed Object Systems

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