PubMed HealthSearch

Biomedical subjects

P W Tucker

Publications and source records attributed to P W Tucker.

12 recordsLinked to original sources

Structure of the constant and 3' untranslated regions of the murine gamma 2b heavy chain messenger RNA.

The complete coding sequence for the constant region of the mouse gamma 2b immunoglobulin heavy chain and the 3' untranslated region has been determined. The coding portion of the sequence is 1008 nucleotides long (amino acid residues 114 to 449), and the 3' noncoding region contains 102 nucleotides preceeding the polyadenylate. An extra carboxyl-terminal lysine residue which had not been observed in the gamma 2b or other gamma subclass protein sequences occurs in the nucleotide sequence and is probably processed posttranslationally. A 17-nucleotide sequence occurs with slight variation twice in CH1 and once in CH2 domains in the same relative location but with different translational phase. This sequence may be the site of crossover in a gamma 2b . gamma 2a heavy chain variant, an indication of possible recombinational activity of some kind.

Animals

Sequence of the cloned gene for the constant region of murine gamma 2b immunoglobulin heavy chain.

The complete nucleotide sequence of the gamma 2b constant region gene cloned from BALB/c liver DNA is reported. The sequence of approximately 1870 base pairs includes the 5' flanking, 3' untranslated, and 3' flanking regions and three introns. The C gamma 2b coding region is divided by these introns into four segments corresponding to the homology domains and hinge region of the protein. The introns separating the hinge from the CH2 domain and the CH2 from the CH3 domain are small (106 and 119 base pairs). A larger intervening sequence of 314 base pairs separates the CH1 and hinge regions. The stretch of DNA comprising this large intron plus the hinge shows a strong homology with the other CH domains.

Animals

Staphylococcal nuclease reviewed: a prototypic study in contemporary enzymology. IV. The nuclease as a model for protein folding.

This is the last in a series of four articles in which the chemical, enzymological and crystallographic work on Ribonucleate (deoxyribonucleate)-3'-nucleotidohydrolase, EC 3.1.4.4 (staphylococcal nuclease, micrococcal nuclease) will be reviewed and correlated. This article discusses the use of the nuclease as a model system for the study of the mechanisms and energetics of the folding-unfolding reaction in proteins and for the study of the interrelationships between amino acid sequence and three-dimensional structure.

Epitopes

Staphylococcal nuclease reviewed: a prototypic study in contemporary enzymology. III. Correlation of the three-dimensional structure with the mechanisms of enzymatic action.

This is the third in a series of four articles in which the chemical, enzymological and crystallographic work on Ribonucleate (deoxribonucleate)-3'-nucleotidohydrolase, EC 3.1.4.4 (staphylococcal nuclease, micrococcal nuclease) will be reviewed and correlated. This article describes the structure of the nuclease and of a nuclease-inhibitor complex as determined by x-ray crystallography. The crystal structures are correlated with some of the known chemical and enzymological properties of the enzyme, and the three areas combined to propose a mechanism of action.

Amino Acid Sequence

Staphylococcal nuclease reviewed: a prototypic study in contemporary enzymology. II. Solution studies of the nucleotide binding site and the effects of nucleotide binding.

This is the second of a series of four articles in which the chemical, enzymological and crystallographic work on Ribonucleate (deoxyribonucleate)-3'-nucleotidohydrolase, EC 3.1.4.4. (staphylococcal nuclease, micrococcal nuclease) will be reviewed and correlated. This article discusses studies in solution delineating the extent of the binding site of the enzyme and identifying some of the particular amino acid residues that form this site. In addition, the effects of the very potent inhibitory combination of thymidine-3',5'-diphosphate and Ca2+ on the conformation of the enzyme and its physical, chemical and enzymological properties will be reviewed.

Binding Sites

Staphylococcal nuclease reviewed: a prototypic study in contemporary enzymology. I. Isolation; physical and enzymatic properties.

This is the first of a series of four articles in which the chemical, enzymological, and crystallographic work on Ribonucleate (deoxyribonucleate)-3'-nucleotidohydrolase, EC 3.1.4.7, (Staphylococcal nuclease, Micrococcal nuclease) will be reviewed and correlated. This article discusses the purification of the enzyme and its general physical and enzymological properties. Subsequent articles will deal with specific studies of the nucleotide binding site, crystallographic studies of a nuclease-inhibitor complex, use of the nuclease as a model for protein folding and possible mechanisms for the action of the enzyme.

Amino Acid Sequence

Cloning human fetal gamma globin and mouse alpha-type globin DNA: preparation and screening of shotgun collections.

Shotgun collections of Charon 3A bacteriophages containing Eco RI fragments of human and mouse DNA were constructed with the use of in vitro packaging. Plaques were screened by hybridization, and globin-specific clones were isolated from both human (Charon 3AHs51.1) and mouse (Charon 3AMm30.5). The fragments cloned were detected in unfractionated genomic DNA by the Southern method of hybridization.

Animals

Cloning human fetal gamma globin and mouse alpha-type globin DNA: characterization and partial sequencing.

Two globin-related clones isolated from collections of bacteriophages containing unfractionated Eco RI fragments of human and mouse DNA were characterized. Charon3AHs51.1Hbgamma includes 2.7 kilobase pairs of human DNA containing a large part of a fetal gamma globin chain structural gene; Charon 3AMm30.5 includes 4.7 kilobase pairs of mouse DNA related to alpha globin. The human fetal gamma globin gene has within its coding region two intervening sequences of noncoding DNA, IVS 1 and IVS 2, of approximately 1-0 and 900 base pairs. Sequence IVS 1 is located at the position of one of the two intervening sequences occurring in adult globin genes; IVS 2 is located at the position of the other.

Amino Acid Sequence

Structure of hemoglobins Zürich [His E7(63)beta replaced by Arg] and Sydney [Val E11(67)beta replaced by Ala] and role of the distal residues in ligand binding.

In hemoglobin Zürich the side chain of the distal arginine attaches itself to the propionate of the heme, leaving the heme pocket wide open, allowing sulfanilamides easy access to the iron, and doubling the partition coefficient between CO and O2. The replacement of the distal valine by alanine in hemoglobin Sydney leaves a large gap inside the heme pocket, which is partly filled by a water molecule bonded to the distal histidine. Hemoglobin Sydney has the same partition coefficient between CO and O2 as hemoglobin A. Replacement of the distal histidine increases the stretching frequency of CO linked to the beta heme by 6 cm-1, but replacement of the distal valine increases it by only 3 cm-1, but replacement of the distal histidine leaves the O-O stretching frequency unchanged.

Alanine

Tumor-inhibiting properties of the neutral P-O-ethyl ester of adenosine 3':5'-monophosphate in correlation with its crystal and molecular structure.

The P-O-ethyl ester of cAMP has been synthesized, its inhibition of solid and ascites tumors studied, and its pattern of urinary excretion followed. Et-cAMP is more effective than cAMP against solid sarcoma 180 in mice and against Ehrlich ascites carcinoma cells in tissue culture. The urinary excretion pattern of injected E-t-cAMP suggests that about two-thirds of the injected dose (13 mumol per animal) is retained in the rat rather than being promptly excreted. Liver slice studies of the effect on glycogenolysis suggest that the Et-cAMP is converted to cAMP intracellularly. The compound crystallizes in space group P21 with one molecule per asymmetric unit. The base ring has the anti conformation. The ethyl group is endo to the base ring and is axial in the flattened chair-conformer six-membered ring formed by the 3'-5' O-P-O cyclization. In most other respects the structure of the compound is closely similar to the known structures of other cyclic nucleotides.

Animals