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Biomedical subjects

F Norris

Publications and source records attributed to F Norris.

33 records · Page 2Linked to original sources

Onset, natural history and outcome in idiopathic adult motor neuron disease.

Cases of adult-onset idiopathic motor neuron disease (MND) identified from January 1970 through December 1986 were studied in a defined area of California. The patients were followed prospectively throughout the illness in 99% of cases. Among 708 cases aged 25-74 years at onset, the most common type (86%) was typical, sporadic amyotrophic lateral sclerosis (SporALS). The risk of bulbar onset and shorter survival times increased with age in both men and women. About 4%, mainly younger men, experienced unusually long courses with milder paralysis, but could not be identified early in the illness. They probably represent one extreme of the ALS spectrum rather than a distinct subtype. Familial ALS (FamALS) was diagnosed in 7%. It developed earlier in life but ran a slightly longer course, which suggests a different disease process. Overall there was a statistically significant predominance of males, especially in 17 cases (2%) of progressive muscular atrophy (PMA). There were 26 cases (4%) classified as primary lateral sclerosis (PLS). Progressive bulbar palsy was not found; that diagnosis usually denotes merely the bulbar onset of ALS.

Adult↗

Recombinant human extrinsic pathway inhibitor. Production, isolation, and characterization of its inhibitory activity on tissue factor-initiated coagulation reactions.

Previous studies have shown that extrinsic pathway inhibitor (EPI) is an effective inhibitor of factor Xa alone or factor VIIa-tissue factor complex in the presence of factor Xa. Since tissue factor exposure is implicated in thrombogenesis, we hypothesized that EPI may be valuable in the treatment of some thromboembolic episodes. Furthermore, EPI may be an important factor in bleeding complications in hemophiliacs. In the present study, human EPI was expressed in baby hamster kidney cells using a mammalian expression vector. Transfected cells expressed 1-2 micrograms/ml of recombinant EPI (rEPI) which was purified to homogeneity by heparin-Sepharose chromatography, ion-exchange chromatography, and reverse phase high performance liquid chromatography. Purified rEPI exhibited a specific activity of 30,000 units/mg and migrated as a single band in sodium dodecyl sulfate-polyacrylamide gel electrophoresis with an apparent molecular weight of 42,000. In addition, the NH2-terminal sequence of rEPI was identical to that of HepG2 EPI and HeLa EPI. The ability of rEPI to inhibit factor X activation by a complex of factor VIIa-tissue factor was then examined in the presence and absence of plasma concentrations of human factors VIII and IX. Using relipidated human brain tissue factor apoprotein, rEPI inhibited the factor VIIa-mediated activation of factor X half-maximally at 2.5 and 1 nM in the presence and absence of factors VIII and IX, respectively. Using monolayers of a human bladder carcinoma cell line (J82) as the source of tissue factor, the activation of factor X by cell-bound factor VIIa was inhibited half-maximally by 5 nM rEPI in the presence of factors VIII and IX. The proteolytic activity of J82 cell-bound factor Xa toward prothrombin was inhibited half-maximally at approximately 5 nM rEPI, while the amidolytic activity of factor Xa in solution was inhibited by rEPI with a Ki of 130 pM. Recombinant EPI also inhibited the amidolytic activity of factor VIIa half-maximally at 10 nM rEPI in the presence of relipidated tissue factor apoprotein and calcium. These results indicate that, in the presence of plasma concentrations of factors VIII and IX, at least 10 times the plasma concentration of EPI is required to reduce factor VIIa-dependent factor X activation one order of magnitude in vitro. In the absence of functional factor VIII and IX, rEPI at plasma levels was a potent inhibitor of factor VIIa-mediated factor X activation, and this activity presumably accounts for the inability of hemophiliacs to initiate hemostasis via the extrinsic pathway.

Amino Acid Sequence↗

Aprotinin and aprotinin analogues expressed in yeast.

Synthetic genes encoding aprotinin and aprotinin analogues were constructed and fused in frame to the S. cerevisiae mating factor alpha 1 signal-leader (1-85) sequence. Expression in yeast resulted in secretion into the culture medium of a moderate yield of correctly processed aprotinin (1-58) together with two N-terminally extended forms. Des-Arg1, Pro2-aprotinin was expressed in a higher yield. In this case only the correct N-terminal amino acid sequence was found. Substitution of Ser42 for Arg42 in the potential internal KEX2 processing site improved the secretion yield. The aprotinins are characterized by an inhibition profile similar to that of native aprotinin. Des-Arg1, Pro2-[Arg15, Ser42] aprotinin has a strongly increased plasma kallikrein inhibition profile.

Aprotinin↗

Monomeric insulins obtained by protein engineering and their medical implications.

The use of insulin as an injected therapeutic agent for the treatment of diabetes has been one of the outstanding successes of modern medicine. The therapy has, however, had its associated problems, not least because injection of insulin does not lead to normal diurnal concentrations of insulin in the blood. This is especially true at meal times when absorption from subcutaneous tissue is too slow to mimic the normal rapid increments of insulin in the blood. In the neutral solutions used for therapy, insulin is mostly assembled as zinc-containing hexamers and this self-association, which under normal physiological circumstances functions to facilitate proinsulin transport, conversion and intracellular storage, may limit the rate of absorption. We now report that it is possible, by single amino-acid substitutions, to make insulins which are essentially monomeric at pharmaceutical concentrations (0.6 mM) and which have largely preserved their biological activity. These monomeric insulins are absorbed two to three times faster after subcutaneous injection than the present rapid-acting insulins. They are therefore capable of giving diabetic patients a more physiological plasma insulin profile at the time of meal consumption.

Animals↗

The secretion of glucagon by transformed yeast strains.

Saccharomyces cerevisiae strains were transformed with plasmids coding for modified mating factor alpha 1 leader sequences followed by glucagon. Glucagon-containing peptides which were secreted into the fermentation broth were isolated and their amino acid sequences determined. The yeast strain transformed with the sequence coding for the complete mating factor alpha 1 leader sequence preceding the glucagon gene (MT556) secreted glucagon plus glucagon extended at its N-terminal by parts of the leader sequence. The yeast strain transformed with the sequence coding for a truncated mating factor alpha 1 leader sequence before the glucagon gene (MT615) secreted glucagon. These observations suggest that S. cerevisiae is a suitable vehicle for the efficient expression of plasmids coding for polypeptides similar to glucagon (e.g. VIP, secretin, GIP).

Amino Acid Sequence↗

GENEVIEW and the DNACE data bus: computational tools for analysis, display and exchange of genetic information.

We describe an interactive computational tool, GENEVIEW, that allows the scientist to retrieve, analyze, display and exchange genetic information. The scientist may request a display of information from a GenBank locus, request that a restriction map be computed, stored and superimposed on GenBank information, and interactively view this information. GENEVIEW provides an interface between the GenBank data base and the programs of the Lilly DNA Computing Environment (DNACE). This interface stores genetic information in a simple, free format that has become the universal convention of DNACE; this format will serve as the convention for all future software development at Eli Lilly and Company, and could serve as a convention for genetic information exchange.

Animals↗

Distribution of alpha interferon in serum and cerebrospinal fluid after systemic administration.

After intravenous infusion of recombinant leukocyte interferon (rIFN-alpha A) to four subjects with an indwelling reservoir, serial serum and cerebrospinal fluid samples were taken over 48 hr and were analyzed for interferon by an enzyme immunoassay method (ELISA). On separate occasions, 18 and 50 X 10(6) of rIFN-alpha A were infused over 10 min. Maximum serum concentrations of rIFN-alpha A ranged from 6720 to 11,000 pg/ml and from 32,900 to 43,400 pg/ml after the 18 and 50 X 10(6) U doses. There was no measurable concentration of rIFN-alpha A in the cerebrospinal fluid of subjects who received 18 X 10(6) U doses. In three of four subjects who received 50 X 10(6) U rIFN-alpha A, concentrations ranged from 17 to 70 pg/ml that were measurable no earlier than 1 hr after the start of the infusion and that in two cases were measurable throughout 24 hr.

Animals↗

Glucoamylases G1 and G2 from Aspergillus niger are synthesized from two different but closely related mRNAs.

By the use of glucoamylase-specific synthetic oligodeoxyribonucleotides and molecular cloning of cDNA synthesized from Aspergillus niger total poly(A) + RNA, the primary structure of the glucoamylase G1 mRNA was determined. Glucoamylase G1 is synthesized as a precursor of 640 amino acid residues containing a putative signal peptide of 18 residues, a short propeptide of six residues and the 616 residues long mature enzyme. In vitro translations of mRNA and immunoprecipitations with glucoamylase-specific antisera showed that two glucoamylase polypeptides are synthesized. The larger form with an apparent mol. wt. of 71 000 corresponds to the precursor of glucoamylase G1, and the shorter form with an apparent mol. wt. of 61 000 corresponds to the precursor of glucoamylase G2. From the nucleotide sequencing data of several glucoamylase-specific cDNA recombinants it is shown that the G1 mRNA contains a 169 bp long intervening sequence that can be spliced out to generate a G2 mRNA. Only the 3' part of the G1 mRNA is modified by this splicing event. This kind of differential mRNA processing to give different protein products from one primary transcript has previously only been demonstrated in higher eukaryotes.

Amino Acid Sequence↗

Percutaneous gastrostomy. A new simplified and cost-effective technique.

A refined endoscopically controlled percutaneous tube gastrostomy has been described in detail, and the experience gained in 28 patients has been reported herein. A majority of the patients had severe underlying neurologic disorders, malignancy of the oral pharynx or esophagus or chronic intestinal obstruction due to advanced malignancy. The three groups of patients were analyzed regarding mortality and morbidity. Three minor complications occurred in the entire group, and three in-hospital deaths occurred which were unrelated to the tube. In addition, four other patients died from their underlying disease several months after discharge from the hospital. Analysis of this technique has shown it to be safe, easy to perform, and acceptable to the patients and supporting personnel. A cost analysis showed significant savings when this technique was utilized instead of operative gastrostomy.

Aged↗

Structure of a human gastrin gene.

A gastrin gene was isolated from a genomic library of human DNA. The human gastrin gene is about 4100 base pairs long and contains two intervening sequences. Thus, a 3500-base-pair intervening sequence is located 5 base pairs proximal to the ATG initiator codon, while a 129-base-pair intervening sequence separates the region coding for the principal hormonal form of gastrin, the heptadecapeptide, from the region coding for the major amino-terminal portion of the gastrin precursor. The 5' flanking region of the gene contains the conserved sequences, T-A-T-A-A and G-A-C-T-C-A-T-A-T, in positions similar to those of other eukaryotic genes.

Amino Acid Sequence↗

Efficient site-directed mutagenesis by simultaneous use of two primers.

A rapid and efficient procedure for site specific mutagenesis is described. A double primed synthesis with a 17-mer mismatch primer and a "universal" 15-mer M13 sequencing primer was used to introduce a T to A transversion into an ompF signal peptide gene cloned in the M13mp8 vector. The two primers were annealed to the circular single stranded M13 template. After a short extension and ligation reaction, a double stranded restriction fragment containing the mismatch (ompF*/EcoR1-SalI) was cut out of the partly single stranded circular DNA and inserted into pBR322. 42% of the E.coli transformants harboured plasmid with the desired mutation, which could be detected by the appearance of a new restriction site (MboII) and by dot blot hybridization of plasmid DNA with the 32P-labeled 17-mer.

Bacterial Outer Membrane Proteins↗

Molecular cloning of human gastrin cDNA: evidence for evolution of gastrin by gene duplication.

An oligo(dT)-primed cDNA copy of the mRNA coding for the human gastrin precursor was constructed from poly(A)-containing RNA from a human pancreatic, gastrin-producing tumor (a gastrinoma). The cDNA was inserted into the Pst I endonuclease site of plasmid pBR322 by the use of the poly(dC) and poly(dG) tailing procedure. Clones containing gastrin sequences were selected by hybridization to a purified single-stranded 32P-labeled gastrin cDNA probe. This probe was constructed with gastrinoma mRNA as template. As primer for the cDNA synthesis, we used a synthetic oligonucleotide mixture, d(AG-A-A-AG-T-C-C-A-T-C-C-A), corresponding to the gastrin-specific amino acid sequence Trp-Met-Asp-Phe. In this way we determined the nucleotide sequence of the entire coding region (303 nucleotides), the entire 3' untranslated region (102 nucleotides), and 8 nucleotides of the 5' untranslated region. A striking homology between parts of the coding region suggests that evolution of the gastrin gene has involved a gene duplication.

Amino Acid Sequence↗

Solid phase synthesis of oligonucleotides on a crosslinked polyacrylmorpholide support.

A suitable support for the synthesis of oligonucleotides by the phosphodi- and triester approaches was prepared by treatment of commercially available crosslinked polyacrylmorpholide beads with piperazine. The resulting polymer was used as a support for the synthesis of the self complementary decanucleotide d(T-C-G-G-A-T-C-C-G-A). An analog of dDMTrt in which one of the methoxy groups had been replaced by a carboxymethyloxy group was anchored to the polymer by an amide addition of an excess of protected nucleotide using phosphodiester methodology. Polymer supported synthesis by the phosphotriester approach of the octanucleotide d(T-T-T-T-T-T-T-T) and the hexanucleotide d(G-C-C-C-A-T) is also described. In this case 5'-O-dimethoxytritylthymidine 3'-O-monophthalate was synthesized and linked to the piperazinylated polymer. For the chain extension(3' to 5') a very simple deprotection and coupling cycle was devised.

Base Sequence↗