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A Cavill

Publications and source records attributed to A Cavill.

3 recordsLinked to original sources

Sequence analysis of subunits of the membrane-bound nitrate reductase from a denitrifying bacterium: the integral membrane subunit provides a prototype for the dihaem electron-carrying arm of a redox loop.

Three genes, narH, narJ and narI, of the membrane-bound nitrate reductase operon of the denitrifying bacterium Thiosphaera pantotropha have been identified and sequenced. The derived gene products show high sequence similarity to the equivalent (beta, putative delta and gamma) subunits of the two membrane-bound nitrate reductases of the enteric bacterium Escherichia coli. All iron-sulphur cluster ligands proposed for the E. coli beta subunits are conserved in T. pantotropha NarH. Secondary structure analysis of NarJ suggests that this protein has a predominantly alpha-helical structure. Comparison of T. pantotropha NarI with the b-haem-binding integral membrane subunits of the E. coli enzymes allows assignment of His-53, His-63, His-186 and His-204 (T. pantotropha NarI numbering) as b-haem axial ligands and the construction of a three-dimensional model of this subunit. This model, in which the two b-haems are in different halves of the membrane bilayer, is consistent with a mechanism of energy conservation whereby electrons are moved from the periplasmic to the cytoplasmic side of the membrane via the haems. Similar movement of electrons is required in the membrane-bound uptake hydrogenases and membrane-bound formate dehydrogenases. We have identified two pairs of conserved histidine residues in the integral membrane subunits of these enzymes that are appropriately positioned to bind one haem towards each side of the membrane bilayer. One subunit of a hydrogenase complex involved in transfer of electrons across the cytoplasmic membrane of sulphate-reducing bacteria has structural resemblance to NarI.

Amino Acid Sequence↗

Computerized family practitioner committee records--a data base for general practitioners.

In the primary care environment the role of preventive medicine is assuming increasing importance and general practitioners need accurate and up-to-date information about their practice population. Computerization of family practitioner committee registers should provide a readily accessible data base from which data about groups of patients within the practice area can easily be extracted. This paper describes a study carried out in Northumberland, which set out to establish the type of information which would be of interest to general practitioners and how it could be produced.It was found that a data base holding only registration data was of limited value to general practitioners, although useful for identifying target groups for screening programmes and showing demographic trends within the practice. The doctors felt that the inclusion of medical data would make the register a far more effective resource.

Ambulatory Care Information Systems↗