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Ulrich Desselberger

Researcher at University of Cambridge

Publications -  9
Citations -  1647

Ulrich Desselberger is an academic researcher from University of Cambridge. The author has contributed to research in topics: Genome & Rotavirus. The author has an hindex of 7, co-authored 9 publications receiving 1467 citations.

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Uniformity of rotavirus strain nomenclature proposed by the Rotavirus Classification Working Group (RCWG).

TL;DR: With increasing numbers of complete RV genome sequences becoming available, a standardized RV strain nomenclature system is needed, and the RCWG proposes that individual RV strains are named as follows: RV group/species of origin/country of identification/common name/year of identification /G- and P-type.
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VP6-sequence-based cutoff values as a criterion for rotavirus species demarcation.

TL;DR: Indirect immunofluorescence techniques targeting the rotavirus (RV) protein VP6 are used to differentiate RV species and a potential new RV species, ADRV-N, has been described.
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Rotaviruses Associate with Cellular Lipid Droplet Components To Replicate in Viroplasms, and Compounds Disrupting or Blocking Lipid Droplets Inhibit Viroplasm Formation and Viral Replication

TL;DR: Chemical compounds interfering with LD formation decreased the number of viroplasms and inhibited dsRNA replication and the production of infectious progeny virus; this effect correlated with significant protection of cells from virus-associated cytopathicity.
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Immune Responses to Rotavirus Infection and Vaccination and Associated Correlates of Protection

TL;DR: The immune responses to natural RV infection and RV vaccination in both experimental animals and humans are considered as potential correlates of protection.
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Genomic analysis of codon, sequence and structural conservation with selective biochemical-structure mapping reveals highly conserved and dynamic structures in rotavirus RNAs with potential cis -acting functions

TL;DR: Extensive in silico and in vitro analyses provide evidence of the conservation, complexity, multi-functionality and dynamics of rotavirus RNA structures which likely influence RNA replication, translation and genome packaging.