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G Winter

Publications and source records attributed to G Winter.

At least 181 records · Page 10Linked to original sources

Site-directed mutagenesis as a probe of enzyme structure and catalysis: tyrosyl-tRNA synthetase cysteine-35 to glycine-35 mutation.

Oligodeoxynucleotide-directed mutagenesis has been used on the gene of tyrosyl-tRNA synthetase from Bacillus stearothermophilus to produce mutant enzymes altered at the adenosine 5'-triphosphate (ATP) binding site. Deliberate attempts were made to alter rather than destroy enzymic activity so that kinetic measurements may be made to identify the subtle roles of the enzyme-substrate interactions in catalysis. Cys-35, the -SH group of which is involved in binding the 3'-OH of the ribose ring of ATP, has been mutated to a serine residue [Winter, G., Fersht, A. R., Wilkinson, A. J., Zoller, M., & Smith, M. (1982) Nature (London) 299, 756-758] or glycine residue. The mutant enzymes are less active than the wild type, and the reduction in activity can be attributed to a decrease in the value of kcat and an increase in KM. Thus, the interaction energy of the side chain of Cys-35 with the substrate is not fully realized in the enzyme-substrate complex but is used preferentially to stabilize the transition state. Relative to its absence in the Gly-35 mutant, the side chain of Cys-35 is calculated to stabilize the transition state for pyrophosphate exchange by 1.2 kcal/mol and the transition state for aminoacylation by 1.0 kcal/mol.

Amino Acid Sequence↗

The amino acid sequence of the tyrosyl-tRNA synthetase from Bacillus stearothermophilus.

The primary structure of the tyrosyl-tRNA synthetase (TyrTS) of Bacillus stearothermophilus has been deduced from the nucleotide sequence of the cloned gene and from the amino acid sequence of peptides isolated from the purified enzyme. TyrTS (B. stearothermophilus) has a molecular weight of 47316 and the sequence is 56% homologous with that of TyrTS (Escherichia coli). The binding domain for the substrate intermediate tyrosyl adenylate is located in the N-terminal portion of the polypeptide and is highly conserved in both enzymes. Several lysine residues, which are shielded from acetylation in the TyrTS-tRNATyr complex, are also located in a stretch of highly conserved sequence.

Amino Acid Sequence↗

Deletion mutagenesis using an 'M13 splint': the N-terminal structural domain of tyrosyl-tRNA synthetase (B. stearothermophilus) catalyses the formation of tyrosyl adenylate.

The X-ray crystallographic structure of tyrosyl-tRNA synthetase (TyrTS) comprises only the N-terminal 320 amino acids of the molecule as the C-terminal 99 amino acids are poorly ordered in the crystal. A new technique, employing a single-stranded M13 splint, has been used to direct a deletion in the cloned gene of TyrTS so as to remove the disordered C-terminal region. We find that the truncated enzyme catalyses the formation of tyrosyl adenylate with unchanged Kcat and Km values and the crystallographic model must therefore include all the binding and catalytic residues involved in tyrosine activation. However, the truncated enzyme no longer binds tRNATyr or transfers tyrosine to tRNATyr. This indicates that the structural division of TyrTS is equally a functional one: the N-terminal structural domain catalyses tyrosine activation while the disordered C-terminal domain carries major determinants in tRNA binding.

Adenosine Monophosphate↗

Does the higher order structure of the influenza virus ribonucleoprotein guide sequence rearrangements in influenza viral RNA?

Subgenomic RNAs (sgRNAs) were isolated from defective interfering virus produced by high multiplicity passage of the human influenza strain A/PR/8/34. Cloning and sequencing of 35 unique sgRNAs revealed that many were about 400 nucleotides long, containing about 200 nucleotides from each of the 5' and 3' ends of a full-length segment. Most of the sgRNAs were derived from segment 1, but there were examples from six other segments, including those encoding the haemagglutinin and neuraminidase. Our analysis of the sequence rearrangements found in sgRNAs indicates that they may be generated from the standard viral segments by a jumping viral polymerase that makes transitions between adjacent regions of the RNA template in the ribonucleoprotein tertiary structure.

Base Sequence↗

Polypectomy in the presence of portal hypertension--an increased risk of bleeding?

A report is presented on 58 polypectomies performed in the stomach and colorectum in 46 patients. Twenty-five patients had portal hypertension consequent on liver cirrhosis, while 21 patients had healthy livers. The question as to whether haemorrhage occurred immediately after polypectomy or within the next 24 hours, was investigated. Furthermore, either the stalk (of pedunculated polyps), or the polyp itself (when sessile) was investigated pathologically-anatomically, with respect to its vascularity pattern. The submucosal and intramucosal vascularity patterns were classified in 4 categories, I to IV. A tentative interpretation of the results obtained indicates, on the basis of their mucosal and submucosal vascularity patterns, that patients with portal hypertension developing from a cirrhosis of the liver, are not at any higher risk of haemorrhage than patients with no portal hypertension.

Adult↗

The tyrosyl-tRNA synthetase from Escherichia coli. Complete nucleotide sequence of the structural gene.

The structural component of the tyrS gene of Escherichia coli, comprising 1269 base pairs, has been fully sequenced by the combined M13/dideoxychain termination approach. The gene has a codon usage pattern which is typical of highly expressed proteins and similar to other Escherichia coli aminoacyl-tRNA synthetase genes. Peptide purification and sequencing has been used to locate the N-terminus and to provide confirmation of 95% of the translated protein sequence. This latter yields on Mr of 47,403 for the Escherichia coli tyrosyl-tRNA synthetase, and reveals considerable homology with the primary structure of the analogous enzyme isolated from Bacillus staerothermophilus.

Amino Acid Sequence↗

Nucleotide sequence of human influenza A/PR/8/34 segment 2.

The nucleotide sequence of RNA segment 2 of human influenza strain A/PR/8/34 has been determined. Segment 2 in 2341 nucleotides long and encodes a protein of 757 amino acids (86,500 daltons molecular weight) which is involved in RNA synthesis. Although segment 2 is identical in size to segment 1, which encodes a protein of related function, neither the nucleotide sequences of these two RNA segments nor the amino acid sequences of the encoded proteins appear to be homologous. The sequence of segment 2 completes the sequence of the virus (total 13,588 nucleotides).

Amino Acid Sequence↗

Nucleotide sequences of influenza virus segments 1 and 3 reveal mosaic structure of a small viral RNA segment.

Defective interfering RNAs of influenza virus are small segments derived from viral segments 1, 2 and 3. We present here the complete nucleotide sequences of segments 1 and 3 from the human influenza strain A/PR/8/34 and deduce that the sequence of a small RNA segment from A/NT/60/68, apparently a defective interfering RNA, is derived from five separate regions in segment 3 and from one region in segment 1. These regions, which are located near the terminal of the two parental segments, are arranged in the small RNA segment in an alternating fashion: thus a region derived from near 5' terminus is adjacent to a region derived from near a 3' terminus. We propose that the small segment is generated during positive strand synthesis as a result of the viral polymerase pausing at uridine-rich sequences in the template and reinitiating synthesis at another site.

Base Sequence↗

[Photographic evaluation of the electrophoretic mobility test. A modification].

By insertion of a paraboloid condenser and junction of a usual camera body the cytopherometer was modified to enable an objective evaluation and photographic documentation of the electrophoretic mobility test. The investigation of 25 patients suffering from gynecological cancer and of a control group of the same number using this modified cytopherometer demonstrated a similar rate of false results as achieved by usual timing (28% false, positive or negative, 12% valued ambiguous). In comparison with the timing by a stopwatch the standard deviations of individual photographic measurements were significantly higher (p less than 0,001), whereas no significant difference between the mean mobility indices of the two groups could be calculated (mean mobility index of 25 cancer patients: -7.2 +/- 11.7; mean mobility index of 25 control patients: -3.4 +/- 10.6). In addition the optical modification of the cytopherometer enables a particular analysis of cell movements and their disorders which are reported in detail. According to these observations the qualification of the cytopherometer for immunodiagnosis of cancer is valued doubtful.

Cell Migration Inhibition↗

The structure of two subgenomic RNAs from human influenza virus A/PR/8/34.

The nucleotide sequences of two subgenomic RNA segments from influenza virus A/PR/8/34 have been determined by cloning viral cDNA into the vector M13mp7. Sequence analysis was facilitated by a re-cloning strategy which takes advantage of both wild-type and amber derivatives of the M13 vector. The RNA species (444 and 480 nucleotides) contain the 5' and 3' termini of segment 1 and therefore derive by simple internal deletions of this segment. However, these species are not exact copies of the terminal regions of the progenitor segment but contain a few base changes. These differences suggest that after these RNAs have arisen, their sequences can drift, presumably reflecting a lower selective pressure than on the standard RNA segments.

Base Sequence↗

Structure of the neuraminidase gene in human influenza virus A/PR/8/34.

The complete structure of the neuraminidase gene in influenza A/PR/8/34 has been determined by cloning into the bacteriophage M13 and sequencing with dideoxynucleotide chain terminators. The gene is 1,413 nucleotides long, codes for a protein of 454 amino acids and has five potential glycosylation sites. We suggest that the neuraminidase, unlike the influenza haemagglutinin, is oriented with its N-terminus buried in the viral membrane.

Amino Acid Sequence↗

The use of synthetic oligodeoxynucleotide primers in cloning and sequencing segment of 8 influenza virus (A/PR/8/34).

Complete double-stranded DNA copies of the RNA genes of the human influenza virus A/PR/8/34 have been synthesized by using two synthetic oligodeoxynucleotide primers. The gene encoding the non-structural proteins NS1 and NS2, prepared with these primers, has been cloned into the bacteriophage M13mp7 and sequenced. The sequence is compared with that from another human strain and from an avian strain.

Amino Acid Sequence↗

Nucleotide-sequence heterogeneity and sequence rearrangements in influenza virus cDNA.

Double-stranded cDNA has been synthesized from influenza virus RNA and cloned into derivatives of the bacteriophage M13 for sequence analysis. The characterization of over 200 clones has permitted an analysis both of nucleotide sequence heterogeneity and of clones containing unusual rearrangements of sequence. Heterogeneity, due to genetic variability in the RNA population and to in vitro synthetic errors, was detected at the low level of one nucleotide difference per 3 700 nucleotides. By contrast, gross sequence rearrangements were identified in eight clones. Inversions of sequence within the same cDNA molecule were the predominant type of rearrangement, and three mechanisms for producing such inversions are discussed. In addition, we observed rarer clones containing sequence from one RNA molecule joined to that from another molecule.

Base Sequence↗