Search PubMed⌕ Search

Biomedical subjects

J M Gilbert

Publications and source records attributed to J M Gilbert.

At least 91 records · Page 5Linked to original sources

Characterization of postmortem human brain proteins by two-dimensional gel electrophoresis.

The proteins of membrane and cytosol fractions from frozen human postmortem brain were analyzed by two-dimensional gel electrophoresis (isoelectric range: 5.1-6.0) and both Coomassie-blue and ammoniacal silver staining. Cytosol preparations were analyzed from six different postmortem brains from patients with various neurologic diagnoses and immediate causes of death. Intervals between death and brain freezing (-70 degrees C) ranged from 2 to 20 h. The vast majority of proteins detected in these cytosol fractions had identical molecular weights and isoelectric points in each of six human brains examined. However, in some tissue samples tubulin was either quantitatively decreased or undetectable. The possibility that this partial or complete depletion of tubulin was related to postmortem interval and/or brain freezing was studied using rat forebrain tissue. Rat brain incubated at room temperature for up to 24 h did not reproduce the changes seen in the region of human cytosol tubulin. However, other changes seen in the two-dimensional electrophoretic pattern of rat cytosol proteins did relate to postmortem interval, brain freezing, or both. Rough endoplasmic reticulum (RER) and smooth endoplasmic reticulum were prepared from three human brains, with highly reproducible two-dimensional patterns. Protein analysis of these membrane fractions revealed that human RER contained significant amounts of tubulin, in contrast to rat RER which contained no detectable tubulin. This discrepancy was elucidated by allowing rat brains to remain at room temperature for 24 h before freezing; gels of rat RER prepared from this tissue showed that tubulin subunits were present.

Adult↗

Studies on the biosynthesis of intermediate filament proteins in the rat CNS.

The biosynthesis of brain intermediate filament proteins [neurofilament proteins and glial fibrillary acidic protein (GFA)] was studied with cell-free systems containing either rat spinal cord polysomes (free polysomes or rough microsomes) and rabbit reticulocyte factors or wheat germ homogenate containing spinal cord messenger RNA. The products of translation were isolated by immunoaffinity chromatography and then analyzed by two-dimensional gel electrophoresis (2DGE) followed by fluorography. The free polysome population was found to synthesize two neurofilament proteins (MW 145K, pI 5.4, and MW 70K, pI 5.3) and three isomers of GFA (alpha, beta, and gamma) that differ in isoelectric point. Wheat germ homogenate containing messenger RNA extracted from free cord polysomes synthesized two proteins that comigrated with neurofilament protein standards at 145K 5.4 and 70K 5.3; these proteins were partially purified by neurofilament affinity chromatography. The wheat germ system also synthesized the alpha, beta, and gamma isomers of GFA as characterized by immunoaffinity chromatographic purification and comigration with standards in 2DGE analysis. Our data are consistent with the conclusion that synthesis of neurofilament proteins requires multiple messenger RNAs. Also, synthesis of intermediate filament proteins occurs in the free polysome population; detectable amounts of these proteins were not synthesized by the rough microsomes.

Animals↗

The subunit composition of cerebellar tubulin: evidence for multiple beta tubulin messenger RNAs.

Cytoplasmic proteins were isolated from adult rat forebrain and cerebellum and analyzed by two-dimensional gel electrophoresis under conditions which the major subunits of tubulin were separated. Forebrain cytoplasmic tubulin consisted of two groups of alpha subunits (alpha 1 and alpha 2) and a minimum of two beta subunits (beta 1 and beta 2). However, the rat cerebellar cytoplasmic proteins contained greatly decreased amounts of the beta 1 tubulin subunit relative to the analysis of forebrain proteins. Messenger RNA (mRNA) was purified from cerebellum and forebrain and translated in wheat germ homogenate. Analysis of the translation products of cerebellar mRNA indicated only a trace amount of the beta 1 subunit, whereas the expected amount of beta 1 was found among the translation products of forebrain mRNA. This data is consistent with the conclusion that the beta 1 and beta 2 subunits of tubulin are synthesized from different mRNAs. A decrease in beta 1 mRNA relative to other tubulin mRNAs may be one of the factors responsible for the low steady state amounts of beta 1 tubulin in the cerebellum.

Animals↗

A controlled prospective trial of adjuvant razoxane in resectable colorectal cancer.

Following resection of their tumour, 162 patients with colorectal cancer entered a prospective randomized controlled clinical trial of adjuvant oral razoxane. Thirty-one patients were Duke's group A; 49 group B; 61 group C; and 17 group D; an additional four patients were randomized in error. The adjuvant group received the usual clinical care and 125 mg razoxane twice daily for 5 consecutive days (monday-friday) every week indefinitely. Control patients received the same clinical care as the adjuvant group, but no razoxane. At 3 years, 134 patients (84%) are evaluable. The recurrence rate in the first 6 months was 20% and 28% respectively in the Duke's B and C controls compared with 4% and 9% in the corresponding razoxane treated patients. Most recurrences occurred within the first 6 months from randomization. When all patients as randomized are included in the analysis of survival, irrespective of whether they were cured by surgery (Duke's A), had advanced cancer (Duke's D), or took no razoxane when randomized to take it, then as might be expected any differences there may be between the razoxane-treated and control patients with minimal residual disease (Duke's B and C) are so distorted that the p value of the difference in survival was 0.93. If however only patients with Duke's group B or C are taken (49 controls and 47 treated), log-rank analysis reveals a difference in the cancer mortality curves (p = 0.07). If patients who had been randomized to take razoxane, but who had not taken it at any time (and therefore received the same treatment as controls) are analysed with the controls, the difference between the two groups increases further, with p less than 0.05. The razoxane-treated patients experienced no significant toxicity apart from a readily reversible mild leukopenia in 52% while gastrointestinal symptoms necessitated stopping the drug in only four patients. These four all took the drug for less than 4 weeks. Because there was no toxicity to subtract from any benefit razoxane adjuvant treatment produced and the quality of life was not impaired, the therapeutic benefit of surgery wsa increased to the extent that razoxane increased survival of patients with Duke's B and C tumours.

Clinical Trials as Topic↗

Tubulin synthesis in rat forebrain: studies with free and membrane-bound polysomes.

Free and membrane-bound polysomes were prepared from rat forebrain and added to a cell-free system containing rabbit reticulocyte factors and L-[35S]methionine. The translation products were analyzed by two-dimensional gel electrophoresis followed by autoradiography. The free polysomes synthesized actin and at least four major tubulin subunits (alpha 1, alpha 2, beta 1, and beta 2) that are found in rat forebrain cytoplasm. The membrane-bound polysomes synthesized predominantly one protein (MB) in the tubulin region of the two-dimensional gel. MB has a molecular weight and isoelectric point similar to alpha-tubulin. Only trace amounts of alpha- and beta-tubulin and action were synthesized by the membrane-bound polysomes. MB co-purified with cytoplasmic tubulin after two cycles of aggregation and disaggregation. MB synthesized in vitro (from membrane-bound polysomes) and alpha- and beta-tubulin and actin subunits (synthesized from free polysomes) were digested with Staphylococcus aureus V8 protease, and the resulting peptides were separated by slab gel electrophoresis followed by autoradiography. The peptide pattern of MB was similar but not identical to the peptide patterns of alpha- and beta-tubulin; MB yielded peptides not found in tubulin. We conclude that membrane-bound polysomes from rat forebrain do not synthesize significant amounts of the predominant tubulin subunits synthesized by free polysomes. A major protein (MB) is synthesized by membrane-bound polysomes and is similar, but not identical, to alpha-tubulin synthesized by free polysomes on the basis of molecular weight, isoelectric point, and peptide analysis.

Animals↗

In vitro synthesis of human brain proteins including tubulin and actin by purified postmortem polysomes.

Polysomes were prepared from human brain tissue 2-6 h postmortem; the polysomes were active in a cell-free protein synthesis system containing rabbit reticulocyte factors. Protein synthesis was totally dependent upon added MgCl2, ATP, the reticulocyte factor fraction, and the human polysome fraction. Human brain proteins synthesized in the presence of L-[35S]methionine were analyzed by one- and two-dimensional polyacrylamide gel electrophoresis. Over 250 proteins were synthesized and they extended in size up to 250,000 d; many of the most abundant native human brain proteins were synthesized, including tubulin and actin. It was shown that human brain alpha and beta tubulin and actin isomers synthesized in vitro from human postmortem polysomes have the same apparent molecular weights and isoelectric points as the corresponding proteins synthesized by rat polysomes from fresh cortices. The corresponding tubulin and actin synthesized by human and rat brain polysomes also yield the same radioactive methionine-containing peptides after digestion with Staphylococcus aureus V8 protease. These analyses indicate that postmortem polysomes contain active messenger RNA which can direct the partial and/or complete synthesis of actin and tubulin subunits and other human brain proteins.

Actins↗

The preparation of biologically active messenger RNA from human postmortem brain tissue.

Messenger RNA (mRNA) was extracted from human postmortem brain tissue by alkaline phenol extraction of polysomes followed by oligo (dT)-cellulose chromatography. The mRNA preparations stimulated protein synthesis in a cell-free system containing wheat germ homogenate. The products of protein synthesis were analyzed by one- and two-dimensional gel electrophoresis. These analyses indicated that numerous polypeptides, including tubulin subunits and actin isomers, were synthesized by the human mRNA. The molecular weight range of polypeptides synthesized by human mRNA fractions from two brain specimens were identical, and analysis by two-dimensional gel electrophoresis indicated qualitatively similar products. The yield of mRNA extracted per gram of human tissue was less than the yield obtained with rat forebrains from animals sacrificed immediately before brain removal and mRNA purification. A decrease in the amount of polysomes isolated from human tissue relative to rat brain tissue was a major factor contributing to the low yield. The molecular weight distribution of polypeptides synthesized by human and rat brain mRNA fractions in wheat germ homogenate was similar; thus, there was no indication for selective breakdown or inactivation of high molecular weight mRNA species in the human tissue. Our studies indicate that it is possible to utilize postmortem tissue for molecular biological investigations of human brain mRNA.

Animals↗

The characterization of tubulin in CNS membrane fractions.

Rough endoplasmic reticulum (RER), smooth endoplasmic reticulum (SER), and a plasma membrane (PM) fraction enriched in synaptic membranes were isolated from rat forebrain. The proteins in these membrane fractions were analyzed by two-dimensional gel electrophoresis (2DGE) in the isoelectric range of 5.1 to 6.0 by a modification of the O'Farrell procedure. Proteins were detected by Coomassie Brilliant Blue staining of the electrophoretograms. The results of these analyses were compared with 2DGE analysis of cytosol proteins, with particular attention given to tubulin subunits and actin. The RER contained one major protein (53K 5.4) in the beta-tubulin region with a molecular weight of 53,000 and an isoelectric point of 5.4. The SER contained at least two major proteins in the alpha-tubulin region; one with a migration identical to 53K 5.4 and other proteins with slightly higher apparent molecular weights and more acidic isoelectric points (54K, 5.4 to 5.3), identical to cytoplasmic beta-tubulin. The PM fraction also contained multiple overlapping proteins (54K, 5.4 to 5.3) in the beta-tubulin area and a trace amount of the 53K 5.4 protein. The proteins in the beta-tubulin region were removed from the 2DGE electrophoretogram and digested by Staphylococcus aureus V8 protease, and the peptides separated on one-dimensional polyacrylamide gels. The peptide patterns of 53K 5.4 protein from RER and SER were almost identical and differed significantly from the cytoplasmic beta-tubulin pattern; however, the peptide maps of the PM and SER beta-tubulin region were identical to the cytoplasmic beta-tubulin. The 2DGE analysis of RER did not contain proteins in the region of cytoplasmic alpha-tubulin. SER and PM contained proteins in the alpha-tubulin region with a similar, but not identical, peptide analysis to cytoplasmic alpha-tubulin. Significant amounts of actin were detected in 2DGE analysis of SER and PM, and the peptide analysis of the actin was identical to the cytoplasmic actin analysis. The RER fraction contained only trace amounts of actin. The cytosol and all membrane fractions contained a protein (68K 5.6) found among microtubule-associated proteins, as judged by molecular weight and isoelectric point. Several proteins present in all membrane fractions (61K 5.1 and 58K 5.1) bound to concanavalin A agarose.

Animals↗

Variations in brain cortical polysome translation products among rats of the same strain.

Studies were undertaken to determine whether there exist variations among the translation products of polysomes from different brains of animals of the same strain. Polysomes were prepared from individual rat cortices and translated in a reticulocyte protein-synthesizing system containing rabbit reticulocyte factors and L-[35S]methionine; he resulting radioactive proteins were analyzed by two-dimensional polyacrylamide gel electrophoresis autoradiography. Comparison of the autoradiographs revealed that two acidic proteins, A and B, of apparent 54,000 M. W. occur as three phenotype: A only, B only, or A plus B. These proteins were not detectable by Coomassie brilliant blue staining of two-dimensional electrophoretograms of brain protein preparations. Messenger RNA was extracted from pooled cortices and translated in a wheat germ extract, and both A and B proteins were detected among the products of translation. Cyclic AMP affinity chromatography of the translation products of cortical polysomes showed that both A and B proteins bind to cyclic AMP. Our data are consistent with the conclusion that there are qualitative differences in the polysome translation products that bind to cyclic AMP among individual cortices of rats of the same strain.

Animals↗

Sununit structure of synaptosomal tubulin.

The subunit structure of rat brain synaptosomal tubulin was examined by high resolution two-dimensional gel fractionation. Whole brain cytoplasmic tubulin consists of two groups of alpha subunits (alpha1 and alpha2), and a minimum of two beta subunits (beta1 and beta2). Both alpha subunits consist of a major relatively acidic form and minor relatively basic forms. In contrast, tubulin purified from synaptoplasm contains an additional subunit, alpha3, which has the same isoelectric point but slightly faster electrophoretic mobility than alpha1 and alpha2. All synaptosomal alpha subunits are the relatively acidic forms and the minor basic forms are absent. The synaptosomal beta subunits have electrophoretic properties similar to the corresponding cytoplasmic forms. The alpha3 synaptosomal tubulin subunit has affinity for colchicine, has a tryptic peptide map similar to whole brain cytoplasmic alpha tubulin, and can be purified by a standard tubulin purification method.

Animals↗

Parathyroidectomy: extent of resection and late results.

Opinion is divided as to the necessary extent of parathyroid resection in primary hyperparathyroidism. Some surgeons urge that subtotal parathyroidectomy be performed routinely, while others reserve subtotal resections for patients with parathyroid hyperplasia. In a review of 102 patients treated by parathyroidectomy for primary hyperparathyroidism and subsequently followed up for an average of 6 years, there were 73 patients with parathyroid adenoma, 26 with hyperplasia and 3 with carcinoma. The adenoma was not found at the first operation in only 3 cases; in the other 70 after removal of the adenoma no further hypercalcaemia was observed during the follow-up period. Persistent or recurrent hypercalcaemia was a problem in 9 out of the 26 patients with primary hyperplasia who had inadequate resection at the first operation, and also in the 3 patients with carcinoma. Experience shows that peroperative biopsy with frozen section of all the parathyroids is useful in confirming their identity and can be a guide to the type of disease present and the appropriate extent of resection.

Adenoma↗

A comparison between the lecithin/sphingomyelin ratio and the Nile blue sulphate test in the estimation of fetal maturity.

Functional fetal maturity was assessed in 72 patients by measuring in amniotic fluid the lecithin/sphingomyelin ratio and the differential cell count. The correlation between these two tests is presented. Only one fetus with a lecithin/sphingomyelin ratio of 2 or more developed the respiratory distress syndrome after delivery: that was the child of a diabetic mother. The technical limitations of the lecithin/sphingomyelin ratio meant that it could not be measured in 12% of samples obtained.

Adult↗