William J. Rutter American biochemist
Rutter, William J.
Rutter, W. J. (William J.)
Rutter, W.J.
Rutter, William J., 19..-....
Rutter, William J. 1928-
VIAF ID: 16825357 (Personal)
Permalink: http://viaf.org/viaf/16825357
Preferred Forms
- 100 1 0 ‡a Rutter, W. J. ‡q (William J.)
- 100 1 _ ‡a Rutter, W. J. ‡q (William J.)
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- 100 1 _ ‡a Rutter, W.J.
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- 100 1 _ ‡a Rutter, William J. ‡d 1928-
- 100 1 _ ‡a Rutter, William J., ‡d 19..-....
- 100 0 _ ‡a William J. Rutter ‡c American biochemist
4xx's: Alternate Name Forms (12)
Works
Title | Sources |
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Expression of the human insulin gene in an alternate mammalian cell and in cell extracts | |
Hepatitis B viral DNA in liver and serum of asymptomatic carriers. | |
The highly polymorphic region near the human insulin gene is composed of simple tandemly repeating sequences. | |
The human insulin receptor cDNA: a new tool to study the function of this receptor | |
Human somatostatin I: sequence of the cDNA | |
Insulin-like growth factor II receptor as a multifunctional binding protein | |
Isolation and in vitro translation of the messenger RNA coding for pancreatic amylase | |
Isolation and sequence of a rat chymotrypsin B gene | |
Isolation of biologically active ribonucleic acid from sources enriched in ribonuclease | |
Isolation of full-length putative rat lysophospholipase cDNA using improved methods for mRNA isolation and cDNA cloning | |
Isolation of yeast tRNALeu genes. DNA sequence of a cloned tRNALeu3 gene | |
Lambda gt22S, a phage expression vector for the directional cloning of cDNA by the use of a single restriction enzyme SfiI | |
Lineage-specific morphogenesis in the developing pancreas: role of mesenchymal factors | |
Mapping polypeptide hormone genes in the mouse: somatostatin, glucagon, calcitonin, and parathyroid hormone | |
Mapping the S' subsites of serine proteases using acyl transfer to mixtures of peptide nucleophiles | |
A membrane-anchored cytoplasmic domain of the human insulin receptor mediates a constitutively elevated insulin-independent uptake of 2-deoxyglucose. | |
Metabolic control mechanisms in animal cells. | |
Molecular basis of the activation of the tumorigenic potential of Gag-insulin receptor chimeras | |
Molecular control of proliferation and differentiation | |
Molecular mechanisms in the control of gene expression : [proceedings] | |
Molecular structure of yeast RNA polymerase III: demonstration of the tripartite transcriptive system in lower eukaryotes | |
The Neural Crest and the Origin of the Insulin-Producing and Other Gastrointestinal Hormone-Producing Cells | |
Nucleotide and corresponding amino acid sequences encoded by alpha and beta tubulin mRNAs. | |
Nucleotide sequence of a cDNA clone encoding human preproinsulin | |
Nucleotide sequence of the gene coding for the major protein of hepatitis B virus surface antigen | |
Number and evolutionary conservation of alpha- and beta-tubulin and cytoplasmic beta- and gamma-actin genes using specific cloned cDNA probes | |
On the Mechanism of 5-Bromodeoxyuridine Inhibition of Exocrine Pancreas Differentiation | |
Pancreas-specific genes: structure and expression. | |
Pancreatic islet-acinar cell interaction: amylase messenger RNA levels ar determined by insulin | |
Positive control of cyclic AMP on mesenchymal factor controlled DNA synthesis in embryonic pancreas | |
Processing of the native nerve growth factor precursor to form biologically active nerve growth factor | |
The prolactin gene is located on chromosome 6 in humans | |
Properties of the insulin receptor ectodomain | |
Rat insulin genes: construction of plasmids containing the coding sequences. 1977 | |
Rat preprocarboxypeptidase A: cDNA sequence and preliminary characterization of the gene | |
A receptor tyrosine kinase found in breast carcinoma cells has an extracellular discoidin I-like domain | |
Redesigning trypsin via genetic engineering | |
Replacement of lysine residue 1030 in the putative ATP-binding region of the insulin receptor abolishes insulin- and antibody-stimulated glucose uptake and receptor kinase activity | |
Ribosomal RNA genes of Saccharomyces cerevisiae. II. Physical map and nucleotide sequence of the 5 S ribosomal RNA gene and adjacent intergenic regions | |
Role of the prodomain in folding and secretion of rat pancreatic carboxypeptidase A1. | |
Selective alteration of substrate specificity by replacement of aspartic acid-189 with lysine in the binding pocket of trypsin. | |
Selective interaction of 5'-bromodeoxyuridine substituted DNA with different chromosomal proteins | |
Sequence of hepatitis B virus DNA incorporated into the genome of a human hepatoma cell line | |
Sequence of protein disulphide isomerase and implications of its relationship to thioredoxin. | |
Specific inhibition of nuclear RNA polymerase II by alpha-amanitin | |
Splice Junctions: Association with Variation in Protein Structure | |
Structural evolution of an enzyme specificity. The structure of rat carboxypeptidase A2 at 1.9-A resolution | |
Structural origins of substrate discrimination in trypsin and chymotrypsin | |
Structure and processing of yeast precursor tRNAs containing intervening sequences | |
Structure of a family of rat amylase genes | |
Structure of a mouse submaxillary messenger RNA encoding epidermal growth factor and seven related proteins. | |
Structure of two related rat pancreatic trypsin genes | |
Structure of yeast phenylalanine-tRNA genes: an intervening DNA segment within the region coding for the tRNA | |
Studies of specificity and catalysis in trypsin by structural analysis of site-directed mutants. | |
Synthesis and Accumulation of Proinsulin and Insulin during Development of the Embryonic Rat Pancreas* | |
Synthesis of hepatitis B surface and core antigens in E. coli. 1981 | |
Transition-state characterization: a new approach combining inhibitor analogues and variation in enzyme structure. | |
US immigration order strikes against biotech. | |
Use of directed mutagenesis to probe the role of tyrosine 198 in the catalytic mechanism of carboxypeptidase A | |
Yeast DNA-dependent RNA polymerase I. A rapid procedure for the large scale purification of homogeneous enzyme | |
Yeast DNA dependent RNA polymerases I, II and III. The existence of subunits common to the three enzymes | |
Yeast tRNA3Leu gene transcribed and spliced in a HeLa cell extract |