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K J Edwards

Publications and source records attributed to K J Edwards.

At least 55 records · Page 3Linked to original sources

The role of the T-loop of the signal transducing protein PII from Escherichia coli.

The 3D structure of PII, the central protein that controls the level of transcription and the enzymatic activity of glutamine synthetase in enteric bacteria revealed that residues 37-55 form the "T' loop, part of which protrudes from the core of the protein. Within this loop are the only two tyrosine residues that occur in the polypeptide, and one of them, Tyr-51, has been shown by chemical modification studies to be the site of uridylylation. Since tyrosine at position 46 is conserved in all known PII proteins, oligonucleotide directed mutagenesis was used to investigate the role of the two residues. Changing Tyr-51 to phenylalanine or serine abolished uridylylation. Altering tyrosine at position 46 to phenylalanine affected the rate of uridylylation of the protein. This latter mutation does not alter the structure of PII but the reduction in the uridylylation efficiency suggests a role for this residue in recognition and binding of the sensor enzyme uridylyl transferase.

Amino Acid Sequence↗

Crystallization and preliminary X-ray diffraction studies of new crystal forms of Escherichia coli P(II) complexed with various ligands.

New crystals of the signal-transducing protein P(II) have been obtained in the presence of a number of different effector ligands. Various crystal forms are observed depending on the nature of the ligand(s). Co-crystallization with 2-ketoglutarate, glutamate and pyrophosphate produces hexagonal crystals similar to the wild type, ATP yields cubic crystals and ATP in conjunction with 2-ketoglutarate or glutamate yields orthorhombic crystal forms. All of the above crystals have been characterized by X-ray diffraction analysis. The hexagonal crystals belong to space group P6(3), cubic crystals to either I23 or I2(1)3 and orthorhombic crystals to I222. A molecular-replacement solution for the P(II)/ATP/2-ketoglutarate crystals has been obtained giving us an initial model for a trimer in the orthorhombic crystal form.

Journal Article↗

Structural and sequence comparisons of quinone oxidoreductase, zeta-crystallin, and glucose and alcohol dehydrogenases.

Quinone oxidoreductase, zeta-crystallin, glucose dehydrogenase, and alcohol dehydrogenase belong to a superfamily of medium-chain dehydrogenase/reductases. The crystal structures of Escherichia coli quinone oxidoreductase (QOR) and Thermoplasma acidophilum glucose dehydrogenase have recently been determined and are compared here with the well-known structure of horse liver alcohol dehydrogenase. A structurally based comparison of these three enzymes confirms that they possess extensive overall structural homology despite low sequence identity. The most significant difference is the absence of the catalytic and structural zinc ions in QOR. A multiple structure-based sequence alignment has been constructed for the three enzymes and extended to include zeta-crystallin, an eye lens structural protein with quinone oxidoreductase activity and high sequence identity to E. coli quinone oxidoreductase. Residues which are important for catalysis have been altered and the functions and activities of the enzymes have diverged, illustrating a classic example of divergent evolution among a superfamily of enzymes.

Alcohol Dehydrogenase↗

PKC2 gene enquiry.

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Protein Kinase C↗

Crystal structure of Escherichia coli QOR quinone oxidoreductase complexed with NADPH.

The crystal structure of the homodimer of quinone oxidoreductase from Escherichia coli has been determined using the multiple isomorphous replacement method at 2.2 A resolution and refined to an R-factor of 14.1% The crystallographic asymmetric unit contains one functional dimer with the two subunits being related by a non-crystallographic 2-fold symmetry axis. The model consists of two polypeptide chains (residues 2 through 327), one NADPH molecule and one sulphate anion per subunit, and 432 water molecules. Each subunit consists of two domains: a catalytic domain and a nucleotide-binding domain with the NADPH co-factor bound in the cleft between domains. Quinone oxidoreductase has an unusual nucleotide-binding fingerprint motif consisting of the sequence AXXGXXG. The overall structure of quinone oxidoreductase shows strong structural homology to that of horse liver alcohol dehydrogenase.

Amino Acid Sequence↗

Rationally designed analogues of tamoxifen with improved calmodulin antagonism.

Computerized molecular modeling studies on the interactions of the antiestrogen tamoxifen (1) and its analogues bound to the calcium-binding protein calmodulin have guided the rational design of more potent antagonists. Compounds with either three or four methylene units in the basic side chain or slim lipophilic 4-substituents were expected to be more potent. All compounds were tested for antagonism of the calmodulin-dependent activity of cAMP phosphodiesterase and for binding affinity to the estrogen receptor from rat uteri. Some compounds were assayed for cytotoxicity against MCF-7 breast tumor cells in vitro. Introduction of lipophilic 4-substituents was accomplished by using palladium(0)-catalyzed coupling reactions with a 4-iodinated precursor. Both the 4-ethynyl (16 and 17) and 4-butyl (18 and 19) compounds were more potent calmodulin antagonists than tamoxifen. Extension of the basic aminoethoxy side chain of 4-iodotamoxifen (3) and idoxifene (2) ((E)-1-[4-[2-(N-pyrrolidino)ethoxy]phenyl]-1-(4-iodophenyl)-2-phen yl-1- butene) by one or two methylene units resulted in modest gains in calmodulin antagonism (10-13). All the compounds assayed retained estrogen receptor binding characteristics. The compound possessing the optimal combination of calmodulin antagonism and estrogen receptor binding was 12 ((E)-1-[4-[3-(N-pyrrolidino)propoxy]phenyl]-1-(4-iodophenyl)-2-phe nyl-1 - butene) (IC50 = 1.1 microM, RBA = 23). Correlation between calmodulin antagonism and cytotoxicity was demonstrated for selected compounds.

3',5'-Cyclic-AMP Phosphodiesterases↗

The relationship between genetic and physical distances in the cloned a1-sh2 interval of the Zea mays L. genome.

A 470-kb segment from the long arm of chromosome 3 of Zea mays (inbred LH82), encompassing the a1-sh2 interval, was cloned as a yeast artificial chromosome. Comparison of the sizes of the restriction fragments generated from the cloned DNA fragment and from the DNA isolated from the maize inbred line LH82 established the colinearity of the a1-sh2 interval in these DNAs. By utilizing a chromosome fragmentation technique, a yeast artificial chromosome encompassing the a1-sh2 interval was separately fragmented at the a1 and sh2 loci. Comparison of the sizes of these fragmentation products established the physical distance between the a1 and sh2 loci to be 140 kb. Furthermore, these fragmentation experiments established the physical orientation of the a1 and sh2 genes relative to the maize centromere. The molecular cloning of the contiguous region between the a1 and sh2 loci made it possible to define the relationship between physical and genetic distances over a relatively large segment of the maize genome. In this interval, the relationship between physical and genetic distances is 1560 kb/centimorgan, which compares with 1460 kb/centimorgan for the entire maize genome, and 217 kb/centimorgan for a 1-kb segment within the a1 locus. Therefore, these findings are consistent with the hypothesis that genes per se are preferred sites for meiotic recombination rather than the hypothesis that genes reside in large recombinationally active segments of the genome.

Alleles↗

Crystallization and preliminary X-ray diffraction studies on a soluble Escherichia coli quinone oxidoreductase.

Single crystals suitable for X-ray diffraction studies have been obtained from a soluble Escherichia coli NAD(P)H-dependent quinone oxidoreductase (QOR) of molecular mass 35 kDa. Crystals were grown by the vapour diffusion method in the presence of NADPH and diffract strongly to beyond 2.0 A. The space group was determined to be P2(1)2(1)2(1) with unit cell dimensions of a = 107.44 A, b = 104.06 A, c = 77.45 A. There is one dimer in the asymmetric unit.

Crystallization↗

DNA class organization on maize Adh1 yeast artificial chromosomes.

The organization of higher plant genomes is poorly understood. These genomes are typified by their large size and extensive repetitive DNA component. To further our understanding of the composition and arrangement of genomic DNA sequences, we have performed a detailed analysis of a contiguous interval of 280 kb surrounding the Adh1 locus of maize. A series of overlapping lambda subclones was isolated, and individual fragments were characterized with respect to their genomic copy number. Cross-hybridization analyses were used to define a minimum of 37 repetitive DNA classes within the 280-kb interval. Hybridizations with highly repetitive DNAs cloned from other regions of the maize genome suggested that > 50% of all highly repetitive elements in maize are represented on this single yeast artificial chromosome. These repeated sequences were found in an organizational pattern not previously observed; individual repetitive elements are interspersed with one another in an apparently random fashion and are spatially separate from single copy number sequences. Extensive tandem arrays were not found. Sequences from one end of the 280-kb interval were used to isolate overlapping yeast artificial chromosome clones, representing the first step in a chromosome walk.

Alcohol Dehydrogenase↗

The superior gluteal artery in complex acetabular procedures. A cadaveric angiographic study.

A study of fresh cadavera was performed to assess the collateral circulation to the abductor muscle flap created by the various pelvic exposures in the presence of an occlusive injury to the ipsilateral superior gluteal artery. Through a bilateral extended iliofemoral, extended triradiate, modified extensile, or combined ilioinguinal and posterior approach, the right superior gluteal artery was occluded and an arteriogram was made. After use of the extended iliofemoral, the extended triradiate, and the modified extensile approaches, no angiographic evidence of circulation to the abductor muscles was demonstrated on the side of the occluded superior gluteal artery. There was circulation to the abductor muscles, despite occlusion of the superior gluteal artery, in cadavera in which the combined ilioinguinal and posterior approach had been used. After completion of the extended iliofemoral, extended triradiate, and modified extensile exposures, a Microfil injection study was performed on the cadavera to assess the presence of microcirculation. No evidence of Microfil circulation was observed in the abductor muscles macrosurgically or microsurgically. Preoperative assessment of the superior gluteal artery is recommended for a patient who is a candidate for an extensile exposure for an acetabular procedure. If the superior gluteal artery is occluded, a combined ilioinguinal and posterior operative approach should be considered.

Acetabulum↗

Crystal structure of an oligonucleotide duplex containing G.G base pairs: influence of mispairing on DNA backbone conformation.

The structure of the G.G mispaired dodecanucleotide d(CGCGAATTGGCG)2 has been solved by x-ray crystallography and refined to an R factor of 18.8% at 2.2 A resolution for 3513 reflections. The dodecamer crystallizes as a B-type DNA double helix. It contains two G(anti).G(syn) base pairs--i.e., G-4/G-16(anti).G-21/G-9(syn). The Hoogsteen base pairing involves atoms O-6 and N-7 of the guanine in the syn conformation with atoms N-1 and N-2 of the anti-paired purine. One G.G base pair has a bifurcated hydrogen bond between G-4(N-1)...G-21(N-7) and G-4(N-1)...G-21(O-6). There is little overall structural distortion of the double helix induced as a consequence of the mispairing. The helical width is significantly increased by comparison with the structure of the native duplex, and the minor groove width in the 5'-AATT region is decreased. The G.G base pairing induces high-BII phosphate conformations at residues G-9 and T-20 in addition to more normal BII conformations at G-10 and G-22. It is suggested that these backbone aberrations provide signals for the facile repairability of G.G mispairs in DNA.

Base Composition↗

An investigation of the color-affect hypothesis in Exner's comprehensive system.

The color-affect hypothesis states that color responses on the Rorschach provide information regarding an individual's emotional life. The present study explored the several color-affect interpretive hypotheses in Exner's popular Comprehensive System by using a theory-relevant measure of affective modulation inferred from 32 undergraduates' behavior in an emotionally salient dyadic interaction. Subjects designated as high affective modulators (n = 6) and low affective modulators (n = 10) according to Exner's theory were not significantly different on a discrepancy score measure of affective modulation. It is suggested that Rorschach color scores may be insensitive to the more subtle forms of affective modulation present in less emotionally disordered individuals. Further research is suggested and caution is advised for clinicians assessing affective modulation styles in less severely disturbed patients based on traditional color-affect interpretive theory.

Adolescent↗

Molecular structure of the B-DNA dodecamer d(CGCAAATTTGCG)2. An examination of propeller twist and minor-groove water structure at 2.2 A resolution.

The crystal structure of the dodecanucleotide duplex d(CGCAAATTTGCG)2 has been solved to 2.2 A resolution and refined to an R-factor of 18.1% with the inclusion of 71 water molecules. The structure shows propeller twists of up to -20 degrees for the A.T base-pairs, although there is probably only one (weak) three-centre hydrogen bond in the six base-pair AT narrow minor-groove region. An extensive ribbon of hydration has been located in this groove that has features distinctive from the classic "spine of hydration". Solvation around phosphate groups is described, with several instances of water molecules bridging between phosphates.

Base Composition↗

Crystal structure of a pentamidine-oligonucleotide complex: implications for DNA-binding properties.

The crystal structure of the complex formed between the dodecanucleotide d(CGCGAATTCGCG)2 and the drug pentamidine, which is active against the Pneumocystis carinii pathogen in AIDS patients, has been determined to a resolution of 2.1 A and an R-factor of 19.4%. Analysis of the structure has shown the drug to be bound in the 5'-AATT minor groove region of the duplex, with the amidinium groups H-bonded to adenine N3 atoms in an interstrand manner. The drug molecule adopts an extended conformation, and the immediate binding site spans four base pairs. Structural details of the drug-DNA interactions are discussed, and comparison is made with the dodecamer complex of the structurally similar berenil ligand.

Base Sequence↗

A note on the conformational flexibility of the antiestrogenic drug tamoxifen: preferred conformations in the free state and bound to the protein calmodulin.

The conformational properties of the antiestrogenic drug tamoxifen, a triphenylbut-1-ene derivative, have been studied using molecular mechanics. Four distinct conformers have been identified, and the energy barriers between them have been established. The orientation of the ethyl group substituent has been examined in particular, since the lowest-energy conformers have this group orientated 180 degrees away from its position in the crystal structures of tamoxifen and its derivatives. These differences have implications for the interactions of tamoxifen with the calcium-binding protein calmodulin; relevant results from a molecular-modelling study of this protein-drug complex are presented.

Calmodulin↗