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Dive into the research topics where Richard James Gilbert is active.

Publication


Featured researches published by Richard James Gilbert.


Journal of Biological Chemistry | 1999

Identification of amino acid residues critical for aggregation of human CC chemokines macrophage inflammatory protein (MIP)-1alpha, MIP-1beta, and RANTES. Characterization of active disaggregated chemokine variants.

Lloyd George Czaplewski; Jane McKeating; C. Jeremy Craven; Lee D. Higgins; Victor Appay; Anthony Brown; Tim Dudgeon; Lesley A. Howard; Tim Meyers; Jo Owen; Shilpa Palan; Paul Tan; Giles Wilson; Nigel Robert Woods; Clare M. Heyworth; Brian I Lord; Deb Brotherton; Richard Christison; Stewart Craig; Scott Cribbes; R. Mark Edwards; Steve J. Evans; Richard James Gilbert; Pete Morgan; Eliot Randle; Neil Schofield; Paul G. Varley; Julie Fisher; Jonathan P. Waltho; Michael George Hunter

Human CC chemokines macrophage inflammatory protein (MIP)-1α, MIP-1β, and RANTES (regulated on activation normal T cell expressed) self-associate to form high-molecular mass aggregates. To explore the biological significance of chemokine aggregation, nonaggregating variants were sought. The phenotypes of 105 hMIP-1α variants generated by systematic mutagenesis and expression in yeast were determined. hMIP-1α residues Asp26and Glu66 were critical to the self-association process. Substitution at either residue resulted in the formation of essentially homogenous tetramers at 0.5 mg/ml. Substitution of identical or analogous residues in homologous positions in both hMIP-1β and RANTES demonstrated that they were also critical to aggregation. Our analysis suggests that a single charged residue at either position 26 or 66 is insufficient to support extensive aggregation and that two charged residues must be present. Solution of the three-dimensional NMR structure of hMIP-1α has enabled comparison of these residues in hMIP-1β and RANTES. Aggregated and disaggregated forms of hMIP-1α, hMIP-1β, and RANTES generally have equivalent G-protein-coupled receptor-mediated biological potencies. We have therefore generated novel reagents to evaluate the role of hMIP-1α, hMIP-1β, and RANTES aggregation in vitro and in vivo. The disaggregated chemokines retained their human immunodeficiency virus (HIV) inhibitory activities. Surprisingly, high concentrations of RANTES, but not disaggregated RANTES variants, enhanced infection of cells by both M- and T-tropic HIV isolates/strains. This observation has important implications for potential therapeutic uses of chemokines implying that disaggregated forms may be necessary for safe clinical investigation.


Archive | 1992

Stem cell inhibiting proteins

Stewart Craig; Michael George Hunter; Richard Mark Edwards; Lloyd George Czaplewski; Richard James Gilbert


Archive | 1993

Inhibitor resistant serine proteases

Keith Martyn Dawson; Richard James Gilbert


Archive | 1993

Thrombin activatable plasminogen derivatives

Richard James Gilbert; Michael George Hunter; Keith Martyn Dawson


Archive | 1993

Thrombin activatable plasminogen analogues

Keith Martyn Dawson; Richard James Gilbert; Michael George Hunter


Archive | 1997

Modified plasmin precursors with resistance to inhibitors of plasmin

Keith Martyn Dawson; Richard James Gilbert


Archive | 1995

Menetelmä trombiinin vaikutuksesta pilkkoutuvan plasminogeenianalogin valmistamiseksi

Keith Martyn Dawson; Michael George Hunter; Richard James Gilbert


Archive | 1994

Kantasoluja estävät proteiinit

Stewart Craig; Michael George Hunter; Richard Mark Edwards; Lloyd George Czaplewski; Richard James Gilbert


Archive | 1994

Stem cells inhibit proteins

Stewart Craig; Michael George Hunter; Richard Mark Edwards; Lloyd George Czaplewski; Richard James Gilbert


Archive | 1994

Proteiner inhiberande stamceller

Stewart Craig; Michael George Hunter; Richard Mark Edwards; Lloyd George Czaplewski; Richard James Gilbert

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Brian I Lord

University of Sheffield

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Eliot Randle

University of Sheffield

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Giles Wilson

University of Sheffield

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