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C L Rutherford

Publications and source records attributed to C L Rutherford.

At least 19 recordsLinked to original sources

Characterization and cloning of glycogen phosphorylase 1 from Dictyostelium discoideum.

We have cloned cDNA and genomic DNA fragments from Dictyostelium discoideum that represent the entire coding region of glycogen phosphorylase 1 (gp1, alpha-D-glucosyltransferase, EC 2.4.1.1). Nucleic acid sequencing of the gp1 clones revealed a single 139 bp intron separating the two exons that encode the 853 amino acids of gp1. The gp1 sequences are similar to other genes and proteins described for Dictyostelium in terms of G + C composition of coding and noncoding regions, splice junctions, intron length, codon preference and termination signals. Genomic Southern blot hybridizations suggest that gp1 exists as a single or low copy number gene in Dictyostelium. Northern analyses demonstrate that gp1 is a developmentally regulated transcript. In alignments of the gp1 peptide sequence to glycogen phosphorylase sequences from other organisms, a high degree of amino acid conservation at many active and regulatory sites was found; however, critical residues in the AMP and purine binding sites were not conserved.

Amino Acid Sequence

Cloning, structural analysis, and expression of the glycogen phosphorylase-2 gene in Dictyostelium.

The glycogen phosphorylase-2 (GP2) activity that appears during the cell differentiation of Dictyostelium was purified to homogeneity. The molecular weight of the nondenatured enzyme was 200,000 as determined by Sephacryl S-300 gel filtration and was 107,000 on sodium dodecyl sulfate-polyacrylamide gel electrophoresis, suggesting that the native enzyme consists of two similar subunits. The intact protein was digested with trypsin and protease V8, and the resulting peptides were purified by microbore high pressure liquid chromatography. The peptides were sequenced, and oligonucleotides were constructed for polymerase chain reaction amplification of the GP2 gene from Dictyostelium genomic DNA template. The resulting polymerase chain reaction products were sequenced directly and were confirmed to encode portions of the GP2 gene. These fragments were used to probe a partial EcoRI genomic library for the remainder of the GP2 gene. The nucleotide sequence of the GP2-selected clones revealed an open reading frame of 2975 base pairs that was interrupted by two introns of 109 and 105 base pairs, respectively. The open reading frame encoded a protein of 992 amino acids with a calculated molecular mass of 112,500 Da and an isoelectric point of 6.4. An unusual sequence within the second exon of GP2, in which the triplet CAA was repeated 11 times, resulted in 11 in-frame glutamine residues of a possible 15 amino acids coded for by this region. The CAA repeat was transcribed, as shown by the sequence of cDNA. Comparison of the amino acid sequence of Dictyostelium GP2 to the phosphorylases from other organisms revealed that the Dictyostelium protein was 50 and 44% identical to yeast and rabbit muscle phosphorylases, respectively. Northern blot analysis showed that GP2 mRNA was absent in amebas and the early stages of development, reached a maximum level of expression at the slug stage, and then decreased in the terminal stages of development. Comparison of the mRNA expression with the appearance of GP2 enzyme protein and enzyme activity revealed that gp2 mRNA and a 113-kDa GP2 enzyme peptide were expressed concurrently at 10 h of development. However, enzyme activity did not appear until 18 h, coincident with a decrease in the level of the 113-kDa peptide and a corresponding increase in the amount of a 106-kDa GP2 peptide. Addition of cAMP to aggregation-competent cells in liquid culture resulted in the induction of GP2 mRNA, GP2 protein, and GP2 enzyme activity.

Amino Acid Sequence

Regulation of the two forms of glycogen phosphorylase by cAMP and its analogs in Dictyostelium discoideum.

We have recently reported the existence of two forms of glycogen phosphorylase (1,4-alpha-D-glucan: orthophosphate-alpha-glucosyltransferase; EC 2.4.1.1) in Dictyostelium discoideum. During development the activity of the glycogen phosphorylase b form decreased as the activity of the a form increased. The total phosphorylase activity remained constant. The physical and kinetic properties of the Dictyostelium enzyme were similar to those of the mammalian enzyme. In mammals, cAMP regulates the conversion of the two forms by a cAMP dependent protein kinase (cAMPdPK). We report here that if cAMP is added to a single cell suspension, the Dictyostelium phosphorylase activity becomes independent of 5'AMP and a 104 kd peptide appears. We also show the effect of several cAMP analogs on the phosphorylase activity in these single-cell suspensions. The cAMP analogs were selected on the basis of their affinities for the membrane-bound cAMP receptor or the cytoplasmic cAMPdPK. We found that relatively low levels, 100 microM, of cAMP or 2'd-cAMP added to aggregation-competent cells in shaking culture caused a loss of phosphorylase b activity and the appearance of phosphorylase a activity. The analog, 2'd-cAMP, has a high affinity for the cAMP receptor but a low affinity for the cAMPdPK. Two other analogs, Bt2-cAMP and 8-Br-cAMP, which have low affinities for the cAMP receptor but high affinities for the cAMPdPK, required high levels (500 microM) for 'b' to 'a' conversion. cDNAs to three cAMP-regulated genes--PL3, D11, and D3--were used as controls in the above experiments. In order to determine if intracellular levels of cAMP were involved in the regulation of phosphorylase activity, both the phosphorylase and the PL3, D11 and D3 mRNA levels were examined in cells suspended in a glucose/albumin mixture--a medium in which adenylate cyclase is inhibited. Under these conditions, neither gene regulation nor a change in the phosphorylase b to a activity occurred in response to added extra cellular cAMP. The results suggest that an intracellular increase in cAMP is involved in the regulation of the two forms of glycogen phosphorylase in Dictyostelium.

Albumins

Prostate cancer detection in a clinical urological practice by ultrasonography, digital rectal examination and prostate specific antigen.

The prostate cancer detection rate from screening by digital rectal examination and tactilely guided prostate biopsy is approximately 1.7%. Among 1,807 men a detection rate of 14.6% was achieved in a clinical urological practice by physician-conducted prostate ultrasonography, digital rectal examination and determination of serum prostate specific antigen. Results are presented in 5-year increments as well as for the group as a whole. The possible benefit to be derived from an improved detection rate is undetermined. Recommendations are made regarding the clinical use of these diagnostic modalities.

Aged

Glycogen phosphorylase in Dictyostelium discoideum: demonstration of two developmentally regulated forms, purification to homogeneity, immunochemical analysis, cAMP induction, in vitro translation, and molecular cloning.

A key step in the cellular differentiation of Dictyostelium is the degradation of glycogen to provide the precursors for synthesis of the structural end products of development. We have found that the enzyme that initiates this degradative pathway, glycogen phosphorylase (1,4-alpha-D-glucan:orthophosphate alpha-glucosyltransferase; EC 2.4.1.1), is developmentally regulated and exists as two forms. During the time course of development, a previously undescribed activity, the "b" form, decreases, while that of the "a" form increases. The "b" form is inactive unless 5'AMP is included in the reaction mixture. The two forms differ in their elution from DE52 cellulose, affinity constants, thermal stability, affinity for 5'AMP Sepharose, subunit molecular weight, and peptide maps. In crude extracts, anti-a antiserum stains a 104-kD protein that is associated with phosphorylase "a" activity and appears late in development, while anti-b antiserum stains a 92-kD protein that is associated with phosphorylase "b" activity and is present throughout development. We have also demonstrated in vitro phosphorylation of the "b" form by an endogenous protein kinase and a corresponding loss of 5'AMP dependence. If intact cells were exposed to exogenous cAMP, "b" activity decreased and was replaced by "a" activity, as well as the 104-kD protein band on SDS-PAGE. In order to determine if the two forms of the enzyme are different gene products, we screened lambda gt11 expression libraries with antibodies against the purified "a" and "b" forms. Three clones were found to be overlapping by Southern analysis. A yeast glycogen phosphorylase cDNA clone (gpy) and a human muscle glycogen phosphorylase clone (HM-11) cross-hybridized with the Dictyostelium inserts, and gpy shared a few common restriction fragments with the Dictyostelium clones on genomic blots. Northern analysis of Dictyostelium total RNA showed that the Dictyostelium inserts and gpy recognize an mRNA of 3.2 kb, while on poly A-enriched RNA, the yeast clone detects preferentially a 3.6-kb message.

Cloning, Molecular

Clinical application of transrectal ultrasonography and prostate specific antigen in the search for prostate cancer.

We reviewed 225 men who were followed for 2 to 21 years by periodic rectal examination in an effort to detect prostatic cancer without the glands having been sufficiently suspicious for biopsy to have been recommended. These patients underwent further evaluation with transrectal prostatic ultrasonography and serum prostate specific antigen determinations. When appropriate, ultrasonically guided transrectal needle biopsy of the prostate was performed without analgesia, anesthesia or prophylactic antibiotics. This is a simple, safe and effective means to obtain tissue for diagnosis. Recommendations for the current applicability of these diagnostic modalities by the practicing urologist are given.

Aged

The relationship between the two forms of glycogen phosphorylase in Dictyostelium discoideum.

The cellular slime mold, Dictyostelium disoideum, provides an ideal model system to study eukaryotic cell differentiation. In D. discoideum, glycogen degradation provides precursors for the synthesis of developmentally regulated structural products. The enzyme responsible for glycogen degradation, glycogen phosphorylase, exists in active and inactive forms. The active, or 'a' form, is independent of 5'adenosine monophosphate (5'AMP) while the inactive, or 'b' form, is 5'AMP-dependent. The activity of the 'b' form predominates early in development, while the activity of the 'a' form peaks in mid-late development; their combined specific activities remain constant at any point. Polyclonal antibodies raised to the purified forms of this enzyme showed low cross-reactivity. The anti-'a' serum reacted with a 104-kDa protein that was associated with phosphorylase 'a' activity; the anti-'b' serum reacted with a 92-kDa protein that was associated with phosphorylase 'b' activity and weakly cross-reacted with the 104-kDa protein. Immunoblots of peptide maps of the purified enzyme forms showed that each antibody was specific for the proteolytic fragments of its respective antigen. We also demonstrated in vitro phosphorylation of the 'b' form by an endogenous protein kinase. Cyclic AMP perturbation of intact cells caused induction of both phosphorylase-'a' activity and the 104-kDa protein. Immunotitration data suggested that the 'a' form accumulates due to de novo protein synthesis, although this result must be interpreted with caution.

Cyclic AMP

Adenylate cyclase activity and cyclic AMP levels during the development of Dictyostelium discoideum.

Adenylate cyclase activity and endogenous cyclic AMP levels were measured using a highly sensitive radioimmunoassay and protein binding assay during 24 h of development of Dictyostelium discoideum. Adenylate cyclase activity was not detected until the aggregation stage of development (10 h) when a sudden peak of activity was found. The enzyme was active at all subsequent stages, although a slow decline in activity was observed. Similarly, cyclic AMP levels were not detectable through the first 7 h of development and then showed a sudden peak at aggregation. Following aggregation the cyclic AMP levels decreased to approximately 1/2 the peak value and maintained that level throughout the remainder of the developmental cycle. Adenylate cyclase had a narrow range of substrate saturation with a maximum velocity at 1 to 4 mM ATP at both the aggregation stage (10 h) and the sorocarp stage (24 h). At levels of ATP higher than 6 mM the enzyme from both stages was strongly inhibited. No activity was observed in the absence of Mg2+ or dithiothreitol. The activity from 10-, 14-, and 20-h stages was found bound to a 25,000 x g pellet fraction. The sudden appearance of adenylate cyclase and its product cyclic AMP at aggregation provides additional evidence of a role for this nucleotide in chemotaxis, and the retention of enzyme activity and nucleotide level during the subsequent stages may reflect a further function of cyclic AMP during formation of the two cell types.

Adenylyl Cyclases

Application of a microchemical technique to the elucidation of enzyme activity profiles within single human mammary tumors.

An ultramicrochemical technique has been adapted to the evolution of enzyme profiles within individual human mammary tumors. Tandem observation of adjacent stained and lyophilized sections permitted dissection of microgram quantities of freeze-dried material within confirmed regions of malignancy. Enzymes frequently monitored to examine glycolytic, respiratory, and metastatic capacity were microanalyzed successfully: lactic dehydrogenase (LDH), phosphoglucose isomerase (PGI), malate dehydrogenase (MDH), acid phosphatase (AP), aldolase (ALD), glucose-6-phosphate dehydrogenase (G6PDH), pyruvate kinase (PK), alpha-glycerophosphate dehydrogenase (alpha-GOPDH), hexokinase (HK), and phosphofructokinase (PRK). All enzyme activities were higher in infiltrating ductal carcinomas than in fibroadenomas. Extracts of tumor cells mixed in varying proportions with brain or muscle extracts of rat evidenced no modification of expected activity. The technical adaptation described provided a sensitive methodology to resolve problems of relication, profile analysis, sample quantity, and selectivity within heterogeneous tissues.

Acid Phosphatase

ATP, trehalose, glucose and ammonium ion localization in the two cell types of Dictyostelium discoideum.

Ultra-microfluorometric techniques were adapted to follow several compounds related to energy metabolism through the developmental cycle of Dictyostelium discoideum. Each compound (ATP, trehalose, glucose, and ammonium ion) was found to be present in stalk and/or spore cells. The accumulation of NH4+ was interpreted as an indication of protein degradation, a source of energy in this organism. During the early stages of differentiation NH4+ was localized only in prestalk cells. However, it accumulated in spore cells during culmination such that levels were comparable in the two cell types by the end of development. Trehalose, an energy source for germinating spores, was found in both cell types but was preferentially degraded in stalk cells late in development. Glucose, the degradation product of trehalose, was localized in prestalk cells and varied inversely with trehalose levels. ATP was not localized in a specific cell type during development. However, ATP declined in stalk cells at an earlier stage of development.

Adenosine Triphosphate

Defense of the radical perineal prostatectomy.

There is sharp disagreement as to what constitutes the proper surgical approach to localized carcinoma of the prostate. We have performed 31 radical perineal prostatectomies in a six-year period with no mortality and minimal morbidity. Thirteen of these patients were understaged preoperatively and had extraprostatic cancer; however, only one has died from his tumor. One patient is incontinent but none has troublesome local symptoms. These patients required an average of 15 postoperative days, none required more than two units of blood, and careful preoperative consultation has minimized the psychologic stress of impotence. These data contrast sharply with the published morbidity and mortality statistics associated with a preliminary staging lymphadenectomy and a definitive radical retropubic prostatectomy. Also, we are convinced that our patients with stage C cancer have been done a real service by removing the prostate gland even though cancer remains in the stumps of the seminal vesicles. Unless the advocates of the staged procedure can demonstrate an improvement in the patients' survival data, we believe the radical perineal prostatectomy remains the procedure of choice for the cure of localized prostatic cancer and we would advocate this operation as an acceptable palliative approach to selected patients with stage C lesions.

Aged

Protease activity during cell differentiation of the cellular slime mold Dictyostelium discoideum.

Individual aggregates, migrating pseudoplasmodia, and sorocarps of Dictyostelium discoideum were assayed for proteolytic activities by colorimetric and fluorometric techniques. Cathepsin D-like and cathepsin B-like acid protease activities were found to decrease throughout development, but the patterns of decrease were different for the two enzymes. A gradual decrease was found for cathepsin D, whereas a sharp decrease between aggregates and migrating pseudoplasmodia was detected for cathepsin B. By using microdissection techniques and fluorometric assays for amino acids and peptides, prestalk cells and prespore cells exhibited no difference in cathepsin D activity, whereas cathepsin B activity was higher in the prestalk cells. Similarly, stalk cells and spores in the sorocarps showed no difference in cathepsin D activity, but showed a fivefold higher cathepsin B activity in the stalk cells. This finding suggests a possible role for cathepsin B in stalk cell differentiation.

Cathepsins

Glycogen degradation during migration of presumptive cell types in Dictyostelium discoideum.

During the time course of differentiation in Dictyostelium discoideum, glycogen was found to accumulate from the amoebae stage to the culmination stage of development. Upon sorocarp formation (23 h), glycogen was rapidly degraded. Ultramicrotechniques, utilizing amplification of glycogen by enzymatic cycling, were used to follow glycogen metabolism in pre-stalk and prespore cells during the differentiation cycle. Both cell types accumulated glycogen at nearly the same rate. By the pseudoplasmodium stage of development glycogen had accumulated to 50% of its maximum value, and no differences were found between pre-stalk and pre-spore cells. Glycogen was degraded as pre-stalk cells migrated into the position for stalk construction. At the culmination stage of development stalk cells near the base were devoid of glycogen while pre-stalk cells near the apex of the stalk showed no loss of glycogen. The complete loss of glycogen from stalk cells occurred over a distance occupied by approximately 100 cells, and over a time period of approx. 1 h. Pre-spore cells at the culmination stage showed no loss of glycogen even though separated from stalk cells by only a thin cellulose sheath. The degradation of prespore cell glycogen did not commence until stalk construction was completed and the pre-spore mass had reached the apex of the stalk. Pre-spore cells at the culmination stage contained high levels of glycogen while only 2 h later, total degradation had occurred.

Amoeba

Primer dependency of glycogen synthetase during differentiation in Dictyostelium discoideum.

The cellular slime mold, Dictyostelium discoideum, has a life cycle in which the limited number of cell types and easily recognizable stages of development offer a unique model to relate biochemical events to differentiation. Ultramicrochemical techniques were employed to assay enzyme activity and product levels in cell samples as small as 0.02 mug of dry weight in reaction volumes of 0.1 mug. The techniques utilized an amplification procedure employing the enzymatic cycling of pyridine nucleotides. Glycogen synthetase (glucose 6-phophate independent form) was assayed in individual organisms over the time course of development. From aggregation to culmination, activity decreased and was dependent on soluble glycogen primer. From culmination to sorocarp stage, enzyme activity was independent of soluble glycogen primer. Further, the enzyme and its glycogen product were recovered in a low-spin (2000g) pellet fraction from sorocarp homogenates. The change in primer requirements and solubility of enzyme and product occurred during culmination. Localization studies in developing spore cells revealed trends in enzyme activities and solubilities of enzyme and product similar to those in whole organisms. Possible models of cell-specific biochemical events in D. discoideum are discussed.

Cell Differentiation