Crystallization by centrifugation.
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Biomedical subjects
Publications and source records attributed to J E Pitts.
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The cannabinoid content of UK-grown plants (up to the 6th generation) from Moroccan, Sri Lankan and Zambian seedstock was determined by TLC, GLC and HPLC. All plants from the 5th and 6th series resembled their parents, and UK-grown plants were always much greener than those grown overseas. Cannabinoid content remained broadly typical of the source countries. However, tetrahydrocannabinolic acid (THCA) consistently predominated over tetrahydrocannabinol (THC) to a far greater extent than in the original plants; the THCA/THC ratio was 17 in UK-grown plants compared with 2.0 in the plants from the original areas. Two types of plant emerged from the Moroccan seedstock, one tending to increased cannabidiol (CBD), the other tending to zero levels of this component. The first generation Sri Lankan plants revealed one type of plant with an increased CBD/THC ratio (1.7 compared with 0.11) but this returned to the original value in the succeeding generations. Other Sri Lankan plants had low or undetectable levels of CBD. Moroccan and Sri Lankan CBD-rich plants did not contain cannabichromene, although this cannabinoid was found in THC-rich plants. Zambian plants did not appear to show such a pattern. Zambian seedstock plants had total tetrahydrocannabivarin (diol and acid) levels greater than THC but the ratio was progressively reversed in succeeding generations. The study concludes that the ratios of particular cannabinoids is greatly influenced by the environment.
Samples taken from seizures of imported illicit heroin preparations of known geographical origin have been examined. The typology developed in two previous surveys of illicit heroin products is applicable to many of the samples studied in this work, although significant changes have occurred in the chemical profile of illicit heroin products from certain geographical regions. It remains possible, however, to give an opinion as to the origin of many samples of illicit heroin of unknown provenance. The observation in the previous surveys that unrelated samples of illicit heroin possess unique chemical profiles has been confirmed by the present results.
The specificity and pH profile of aspartic proteinases have evolved to include not only pepsin with a broad specificity and an optimal activity in acid media, but also renin, with high specificity for angiotensinogen and activity close to neutral pH. Comparisons of the structures and catalytic activities of aspartic proteinases provide helpful clues for engineering new activity profiles. We illustrate an approach that involves recombinant DNA techniques, biochemistry, structure determination and biocomputing. We use the 3-D structures of inhibitor complexes of several aspartic proteinases to define likely intermediates and specificity sub-sites. The multidisciplinary research is organised as cycles, in which each cycle tests a design hypothesis proposed in the previous cycle. We use one member of the aspartic proteinase family, chymosin, to illustrate these ideas in engineering enzymes with altered pH optima and specificities.
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Two crystal structures of (1 beta-mercaptopropionic acid) deamino-oxytocin are reported. The 'dry form' in space group C2 has cell dimensions a = 27.08 +/- 0.03, b = 9.06 +/- 0.01, c = 22.98 +/- 0.02 A, beta = 102.06 +/- 0.03 with one deamino-oxytocin and six water molecules per asymmetric unit. The 'wet form' in space group P2(1) has cell dimensions a = 27.27 +/- 0.02, b = 9.04 +/- 0.01, c = 23.04 +/- 0.02 A, beta = 102.24 +/- 0.02, with two deamino-oxytocin and 13 water molecules per asymmetric unit. A local twofold parallel to the monoclinic axis gives a pseudo C2 packing. Initial phases of the 'dry form' were calculated by the heavy-atom method from the isomorphous and anomalous difference Pattersons and anomalous difference Fouier synthesis. The structure was refined by using restrained least-squares at 1.2 A resolution to a crystallographic R = 0.10. The molecular replacement method yielded the P2(1) structure that was refined with geometric restraints to R less than 0.09, by using all data to 1.09 A resolution. Deamino-oxytocin consists of a cyclic tocin ring formed by six amino acids, closed by a disulphide bridge, S1-S6, and held by two trans-annular hydrogen bonds N2-O5 and N5-O2 with a type II turn at residues 3 and 4. A flexible tripeptide tail has a loosely hydrogen-bonded type I beta-turn between N9 and O6. The sulphur of cysteine at position 1 is disordered in all the molecules leading to alternative hands of disulphide. The conformational flexibility of Ile 3, Asn 5, Pro 7 side chains and the disulphide bridge is consistent with previous models of oxytocin in which flexibility is necessary for biological activity.
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The tetrahydrocannabinol (THC) content of more than 180 samples of fresh illicit Cannabis products, seized by H.M. Customs and Excise on entry into Great Britain and Northern Ireland over the period 1984-1989, has been determined by gas chromatography. The average THC content of herbal cannabis remained high due to good quality cannabis from Jamaica and the USA, but that of cannabis resin was slightly lower. Resin from Morocco has changed significantly in its physical appearance. There was no fresh seizure of cannabis oil in this period.
Rapid advances in site-directed mutagenesis and total gene synthesis combined with new expression systems in prokaryotic and eukaryotic cells have provided the molecular biologist with tools for modification of existing proteins to improve catalytic activity, stability and selectivity, for construction of chimeric molecules and for synthesis of completely novel molecules that may be endowed with some useful activity. Such protein engineering can be seen as a cycle in which the structures of engineered molecules are studied by X-ray analysis and two-dimensional nuclear magnetic resonance. The results are used in the improvement of the design by using knowledge-based procedures that exploit facts, rules and observations about proteins of known three-dimensional structure.
Two crystal structures of deamino-oxytocin have been determined at better than 1.1A resolution from isomorphous replacement and anomalous scattering x-ray measurements. In each of two crystal forms there are two closely related conformers with disulfide bridges of different chirality, which may be important in receptor recognition and activation.
1. Following an oral dose of S-carboxymethyl [35S]cysteine monkey (rhesus and African green), rat, dog, and man excreted 77,88,95, and 100% respectively of the 35S radioactivity in urine and 7.0, 2.5, 0.7, and 0.3% in faeces during a 3 to 4 day period. 2. The principal drug-related components excreted were unchanged carboxymethylcysteine, dicarboxymethyl sulphide and inorganic sulphate. 3. Rat, dog, and man excreted primarily dicarboxymethyl sulphide and unchanged carboxymethylcysteine and no inorganic sulphate (rat, 7%). 4. Monkey excreted largely inorganic sulphate, moderate amounts of dicarboxymethyl sulphide and a trace of unchanged drug.
A pancreatic polypeptide with some hormonal properties has been purified from chicken and turkey pancreas using acid-ethanol extraction, gel filtration and anion-exchange chromatography. The material has been crystallised. The crystals are monoclinic with space group C2. Preliminary isomorphous replacement experiments have so far provided a single-site derivative with Hg(NO3)2. A low-resolution electron density map phased with this derivative using anomalous scattering considered together with Patterson function calculations suggest that the molecules are partly helical and are arranged as a compact dimer about the crystallographic two-fold axis. The structure and association of these molecules are compared with those of insulin and glucagon, pancreatic protein and polypeptide hormones respectively, which have been studied in great detail.
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