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H M Goodman

Publications and source records attributed to H M Goodman.

At least 91 records · Page 5Linked to original sources

Differential and coordinate regulation of TH and PNMT mRNAs in chromaffin cell cultures by second messenger system activation and steroid treatment.

Primary cultures of chromaffin cells were prepared from bovine adrenal medullae and the levels of mRNA for tyrosine hydroxylase (TH) and phenylethanolamine N-methyltransferase (PNMT) determined. The cells expressed moderate levels of TH mRNA and low levels of PNMT mRNA. The latter appeared to be more sensitive than TH mRNA to variations in the culture medium. The treatment of cultures with agents that activate signal transduction pathways, forskolin or phorbol esters, dramatically enhanced the expression of both mRNAs. The forskolin-induced increases in the steady-state levels of TH and PNMT mRNAs occurred rapidly and were apparent within 5 hours. These data suggest that the TH and PNMT genes can be regulated by second messengers. In contrast, dexamethasone treatment dramatically increased PNMT mRNA with no change in TH mRNA. The increase in PNMT mRNA was apparent within 6 hours of addition of the drug to the culture medium.

1-Methyl-3-isobutylxanthine↗

Identification and map position of YAC clones comprising one-third of the Arabidopsis genome.

YAC clones corresponding to 125 Arabidopsis thaliana RFLP markers have been identified. At least one YAC clone has been isolated for each of the RFLP markers tested. Based on CHEF gel analysis of 196 clones, the mean insert size of the available Arabidopsis YAC libraries is approximately 160 kb. The YACs of known genetic map location encompass about 30% of the Arabidopsis genome. The results presented here represent a first step towards assembly of an overlapping YAC library of the A. thaliana genome.

Arabidopsis↗

Differential expression of the two Arabidopsis nitrate reductase genes.

The differential regulation of the two nitrate reductase (NR, EC 1.6.6.1) genes of Arabidopsis thaliana L. Heynh was examined. cDNAs corresponding to each of the NR genes (NR1 and NR2) were used to measure changes in the steady-state levels of NR mRNA in response to nitrate, light, circadian rhythm, and tissue specificity. Although nitrate-induction kinetics of the two genes are very similar, NR1 is expressed in the absence of nitrate at a higher basal level than NR2. Nitrate induction is transient both in the roots and leaves, however the kinetics are different: the induction and decline in the roots precede that in the leaves. Light induces the expression of each of the genes with significantly different kinetics: NR2 reached saturation more rapidly than did NR1. Both genes showed similar diurnal patterns of circadian rhythm, with NR2 mRNA accumulating earlier in the morning.

Journal Article↗

Plant enolase: gene structure, expression, and evolution.

Enolase genes were cloned from tomato and Arabidopsis. Comparison of their primary structures with other enolases revealed a remarkable degree of conservation, except for the presence of an insertion of 5 amino acids unique to plant enolases. Expression of the enolase genes was studied under various conditions. Under normal growth conditions, steady-state messenger and enzyme activity levels were significantly higher in roots than in green tissue. Large inductions of mRNA, accompanied by a moderate increase in enzyme activity, were obtained by an artificial ripening treatment in tomato fruits. However, there was little effect of anaerobiosis on the abundance of enolase messenger. In heat shock conditions, no induction of enolase mRNA was observed. We also present evidence that, at least in Arabidopsis, the hypothesis that there exists a complete set of glycolytic enzymes in the chloroplast is not valid, and we propose instead the occurrence of a substrate shuttle in Arabidopsis chloroplasts for termination of the glycolytic cycle.

Amino Acid Sequence↗

Antibodies to cytoplasmic sequences of cloned liver growth hormone (GH) receptors recognize GH receptors associated with tyrosine kinase activity.

GH stimulates tyrosyl phosphorylation of GH receptors in 3T3-F442A fibroblasts, and highly purified GH receptor preparations exhibit tyrosine kinase activity. Paradoxically, however, the GH receptor cloned from liver exhibits no sequence similarity to receptors with known signal transduction mechanisms, including those exhibiting ligand-activated tyrosine kinase activity. These observations raise the possibility that there are two kinds of receptors for GH: the first represented by the cloned liver GH receptor, and the second by a tyrosine kinase-containing GH receptor. To inquire into the possibility of two distinct GH receptors, we determined whether the cloned liver GH receptor shares structural similarities with the tyrosine kinase-associated GH receptor. When the cloned rabbit liver GH receptor is expressed in human kidney 293 cells, it migrates with a mol wt appropriate for the tyrosine kinase-associated GH receptor, despite the calculated mol wt of the cloned GH receptor being 60,000 smaller than that of the tyrosine kinase-associated GH receptor. The recognition of tyrosine kinase-associated GH receptor by antipeptide antibodies to three different epitopes on the cytoplasmic domain of the cloned liver GH receptor was also tested. Tyrosyl phosphorylated [125I]human GH-receptor complexes were prepared by immunoprecipitation with phosphotyrosyl-binding antibody; this subpopulation of GH-receptor complexes was recognized by all three antipeptide antibodies. The antibodies also recognized similarly isolated tyrosyl phosphorylated GH-receptor complexes, which had been further phosphorylated in solution on tyrosyl residues upon addition of [gamma 32P] ATP. Furthermore, highly purified GH receptors prepared by sequential immunoprecipitation using phosphotyrosyl-binding antibody and any one of the three antipeptide antibodies incorporated 32P into tyrosyl residues upon the addition of [gamma 32P] ATP. These results provide evidence that tyrosine kinase-associated GH receptors share sequence similarity in the cytoplasmic domain with the cloned liver GH receptor. The cloned GH receptor and the tyrosine kinase-associated GH receptor, therefore, are likely to be the same receptor or related receptor isoforms.

Adipose Tissue↗

Human growth hormone variant produces insulin-like and lipolytic responses in rat adipose tissue.

Genes for normal human pituitary GH (hGH-N) and the GH variant (hGH-V) were expressed in stably transfected mouse mammary cells. The biological properties of hGH-N and hGH-V secreted into the medium were examined using rat adipocytes or epididymal fat segments. Methionyl-hGH produced in E. coli served as a reference standard. The three preparations were quite similar in their ability to bind specifically to intact fat cells and were virtually indistinguishable in their ability to increase glucose oxidation (an insulin-like response), induce refractoriness to insulin-like stimulation, and induce lipolysis in the presence of glucocorticoid. We conclude that placentally expressed hGH-V has a spectrum of metabolic activity comparable to pituitary hGH-N and may contribute to regulation of carbohydrate and lipid metabolism during pregnancy.

Adipose Tissue↗

Mapping the Arabidopsis genome.

We are engaged in a project to assemble a complete physical map of the Arabidopsis thaliana (L.) Heynh. genome. The first stage of this project involved the analysis of approximately 20,000 random cosmid clones representing an 8- to 10-fold sampling redundancy. Using computer matching programs, these clones have been assembled into some 750 contigs, encompassing 90-95% of the Arabidopsis genome. We are currently attempting to bridge the gaps by selecting the missing clones by hybridization. As a complement to this project we have constructed an RFLP map which currently contains 175 markers. The RFLP map provides contact points between the physical map and classical genetic map. Our main objective for undertaking this project is to simplify the cloning of genes where only the locus and not the product of the gene is known. In other words, the combined RFLP/physical map serves as a general cloning tool by simplifying the movement from the genetic locus to the cloned gene.

Abscisic Acid↗

Cellular effects of growth hormone on adipocytes.

Adipocytes are physiological targets for GH in both growing and nongrowing individuals. In adipocytes that have been deprived of GH for at least 3 h, GH initially produces a response that is characterized by increased metabolism of glucose and inhibition of the lipolytic effects of catecholamines. This insulin-like effect disappears within 2-3 h despite continued stimulation and cannot be elicited again unless cells are deprived of GH for at least 3 h. Despite refractoriness to the insulin-like action of GH, the lipolytic effect of GH is evident at this time. Although termination of the insulin-like response and induction of both refractoriness and lipolysis all depend upon synthesis of RNA and proteins, these 3 effects of GH appear to be neither temporally nor causally related. Scatchard analysis of ligand binding data suggests that these various effects are produced by interaction of GH with a single class of receptors. However, since modification of either the hormone or the carbohydrate moiety of the receptor can selectively attenuate either the insulin-like or the lipolytic response, more than one hormone receptor interaction is likely. Northern analysis indicates the presence of at least 2 alternately spliced mRNA transcripts for the GH receptor, and at least 3 different complexes are seen after GH is covalently crosslinked to intact adipocytes. Refractoriness does not result from changes in either the number or affinity of GH receptors, but may result from increased cytosolic calcium. Although the protein kinase C activator phorbol myristate acetate mimics both the insulin-like and lipolytic actions of GH, increased activity of protein kinase C probably does not mediate either action of GH. The intracellular mediators of the diverse actions of GH are unknown at this time.

Adipose Tissue↗

CpG methylation inhibits proenkephalin gene expression and binding of the transcription factor AP-2.

DNA methylation at HpaII (CmCGG) sites inhibits expression of a human proenkephalin-CAT fusion gene when it is transiently expressed in CV-1 cells or stably expressed in C6-glioma cells. The inhibitory effects of HpaII methylation have been mapped to a site within the human proenkephalin promoter located at position -72 relative to the start site of transcription. This region spans a cAMP and phorbol ester inducible enhancer and methylation at this position inhibits both basal transcription and transcription induced by either cAMP or TPA. The HpaII site is located within an element which binds the transcription factor AP-2. In vitro methylation at this HpaII site inhibits the binding of AP-2. These results suggest that CpG methylation inhibits proenkephalin gene expression by directly interfering with the binding of a positively acting transcription factor previously shown to be essential for maximal basal, cAMP, and TPA inducible transcription.

5-Methylcytosine↗

Clinical features of advanced ovarian mixed mesodermal tumors and treatment with doxorubicin- and cis-platinum-based chemotherapy.

Records of 15 patients with stage III and IV malignant mixed mesodermal tumors of the ovary treated between 1977 and 1988 were reviewed. All patients had primary surgery; 13 were given postoperative chemotherapy including doxorubicin and cis-platinum. Median survival for patients receiving chemotherapy is 16 months; 62% were alive at 12 months and 31% at 24 months. Progression-free responses were seen in 85% of treated patients and 55% of these recurred. All recurrences involved the pelvis and were predominantly mesenchymal. Serum CA-125 values accurately reflected tumor presence in 82% of tested patients. Cytoreductive surgery followed by treatment including doxorubicin- and cis-platinum-based chemotherapy is effective in treatment of disseminated ovarian mixed mesodermal tumors, but additional components must be added to achieve durable responses and consistently prolonged survivals.

Aged↗

Cloning and sequence of two different cDNAs encoding 1-aminocyclopropane-1-carboxylate synthase in tomato.

1-Aminocyclopropane-1-carboxylate synthase (ACC synthase; S-adenosyl-L-methionine methylthioadenosine-lyase, EC 4.4.1.14), the key enzyme in ethylene biosynthesis, was purified 5000-fold from induced tomato pericarp. ACC synthase activity was unambiguously correlated with a 45-kDa protein by two independent methods. Peptide sequences were obtained both from the N terminus after electroblotting and from tryptic peptides separated by reversed-phase chromatography. Mixed oligonucleotide probes were used to screen a lambda gt11 library prepared from RNA of induced pericarp tissue. Putative ACC synthase clones were isolated with a frequency of 0.01%. One of these contained a 1.9-kilobase insert with a single open reading frame encoding a polypeptide of 55 kDa. A second, partial cDNA clone was found that differed from the first one in 18% of its bases. Genomic Southern blotting suggests possible tandem organization of the two genes in tomato. The entire coding region was expressed in Escherichia coli and the denatured recombinant polypeptide was used to raise polyclonal antibodies. The antibody preparation both immunoinhibits and immunoprecipitates ACC synthase activity from an enriched tomato extract, confirming the identity of the clone. Northern blot analysis demonstrates that the ACC synthase messenger accumulation is coordinated with fruit ripening.

Amino Acid Sequence↗

Isolation of transcriptionally regulated root-specific genes from tobacco.

Four root-specific cDNA clones and their corresponding genomic clones have been isolated from tobacco (Nicotiana tabacum) by a novel differential hybridization procedure. The genes are expressed at high levels in roots and are not detectable in leaves. The cDNAs are encoded by small gene families of two to four members. Transcription experiments with isolated nuclei demonstrate that the genes are, at least in part, transcriptionally regulated. Constructions in which 1.4 kilobase pairs of 5' flanking region of one of the root-specific genes was fused to a reporter gene (beta-glucuronidase) were transformed into tobacco. beta-Glucuronidase activity in transgenic plants was localized in the roots, demonstrating the cis-acting sequences regulating root-specific expression are present on the 5' flanking region.

Journal Article↗

The isoquinoline sulfonamide inhibitors of protein phosphorylation, H-7, H-8, and HA-1004, also inhibit RNA synthesis: studies on responses of adipose tissue to growth hormone.

To evaluate the possibility that some of the metabolic effects of GH in rat adipose tissue depend upon phosphorylation-dephosphorylation reactions, we examined the effects of the isoquinoline sulfonamide family (H-7, H-8, and HA-1004) of protein kinase inhibitors on the actions of GH. In the course of these studies it became clear that these compounds may also block RNA synthesis. In the concentration range of 50-200 microM, H-7, H-8, and HA-1004 completely blocked lipolysis in response to the combination of 100 ng/ml dexamethasone and 30 ng/ml human GH in segments of epididymal fat from normal rats, but were less effective in blocking lipolysis in response to either 1 mM (Bu)2cAMP or 1 ng/ml isoproterenol, which are known to depend upon activation of protein kinase-A. Activation of protein kinase-C with phorbol myristate nearly doubled the rate of glucose oxidation in segments of normal adipose tissue, and this insulin-like response was completely inhibited with 200 microM H-7. At concentrations as high as 500 microM, H-7, H-8, and HA-1004 failed to inhibit the insulin-like response to GH in tissue segments of either normal or hypophysectomized rats. However, when 200 microM H-7 or H-8, but not HA-1004, was present during the first 3 h of treatment with GH, it prolonged the duration of the insulin-like response (acceleration of glucose oxidation) from its normal termination within 2-3 h to more than 4 h. Identical results were obtained with 5 micrograms/ml actinomycin-D. The effect of H-7 or H-8 was reversible and required the continuous presence of these agents, whereas actinomycin-D was required only during the first 60 min after GH. Termination of the insulin-like response normally is followed by a period of several hours in which the tissues are refractory to further insulin-like stimulation by GH. When actinomycin-D, H-7, H-8, or HA-1004 was added to tissues of hypophysectomized rats 60 min after GH, the insulin-like response terminated at its normal time, but the tissues were not refractory to insulin-like stimulation upon reexposure to GH. These agents also prevented GH from sustaining refractoriness in normal adipose tissue.(ABSTRACT TRUNCATED AT 400 WORDS)

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Effects of tunicamycin on growth hormone binding in rat adipocytes.

Digestion of covalently linked [125I]human (h) GH-receptor complexes with neuraminidase or endoglycosidase F reduced the mass of the principal hormone receptor complex from about 130 kilodaltons (kDa) to 120 and 110 kDa, respectively, suggesting that about 20% of the mass of the GH receptor of rat adipocytes consists of N-linked sialocarbohydrates. Incubation of adipocytes with tunicamycin, an inhibitor of N-linked glycosylation, decreased the incorporation of [35S]methionine into membrane glycoproteins by more than 50% in 4 h and decreased specific binding of [125I]hGH by about 70% after 8 h. Decreased binding and incorporation of [35S]methionine were seen only after a lag time of about 2 h. Cross-linking of [125I] hGH to cells that had been treated with tunicamycin resulted in the appearance of a new labeled species of hormone-receptor complex with an apparent mass of about 110 kDa. This band appeared after a delay of about 3 h and reached approximately equal prominence with the 130 kDa band at 5 h. By 8 h, the 110 kDa complex was the predominant band in radioautograms, but some of the 130 kDa species remained. Scatchard analysis of binding data in tunicamycin-treated adipocytes indicated that decreased binding of [125I]hGH resulted from a 3- to 4-fold decrease in affinity accompanied by only a small (30%) decline in receptor number. Tunicamycin did not affect the rate of receptor turnover in cells that were also treated with cycloheximide to block protein synthesis, but receptor turnover decelerated with increasing time of incubation. Treatment with tunicamycin for 8 h markedly slowed the rate at which specifically bound [125I]hGH disappeared from adipocytes, suggesting that N-linked carbohydrates may play some role in internalization and processing of labeled hormone. We conclude that 1) N-linked carbohydrates contribute about 20 kDa to the apparent mass of the GH receptor of rat adipocytes; 2) N-linked glycosylation is not required for GH receptors to be inserted into the adipocyte membrane in the proper orientation and to retain their ability to recognize and bind GH; 3) N-linked sugar chains are required for maintenance of a normal high affinity of receptors for GH; 4) N-linked carbohydrates are necessary for normal rates of internalization and processing of bound hGH.

Adipose Tissue↗

Evidence for a role of protein kinase C in the stimulation of lipolysis by growth hormone and isoproterenol.

The mechanism that underlies activation of lipolysis by GH is not yet understood. Although cAMP is thought to be involved, the biochemical linkages between GH and cAMP are unknown, and lipolysis produced by GH differs from that produced by such typical activators of adenylate cyclase as the catecholamines with regard to time course, maximum response, and dependence on other factors such as glucocorticoids or theophylline. The present studies were undertaken to evaluate the possibility that activation of protein kinase C by GH may play an important role in the production of the delayed increase in lipolysis. Phorbol myristate acetate (PMA), a known activator of protein kinase C, increased lipolysis in segments of adipose tissue of hypophysectomized rats, and, as with GH, this effect was potentiated by theophylline. The lipolytic effects of PMA were concentration-dependent, required a shorter lag period than those of human GH, increased as the concentration of PMA was raised from 0.1 to 10 microM, and were additive at all concentrations with lipolysis produced by saturating concentrations of GH. The lipolytic actions of GH, but not PMA, were potentiated by dexamethasone in adipose tissue of normal rats. Sphingosine and staurosporine, which are known to inhibit protein kinase C, blocked the lipolytic effects of PMA and severely reduced lipolysis in response to GH in tissues of both normal and hypophysectomized rats. Although higher concentrations of sphingosine interfered with the specific binding of 125I-labeled human GH to isolated adipocytes, the inhibitory effects of sphingosine cannot be attributed to interference with GH binding, since it decreased lipolysis by at least 50% when used at concentrations that were too low to reduce binding significantly. Staurosporine produced little (approximately 20%) or no decrease in binding. At concentrations that severely reduced lipolysis in response to GH and dexamethasone, sphingosine had little or no effect on lipolysis in response to dibutyryl cAMP or forskolin. Staurosporine and sphingosine, however, severely inhibited lipolysis in response to isoproterenol. We conclude that protein kinase C activity plays an important role in hormone-stimulated lipolysis probably by an action exerted on the transduction pathway proximal to cAMP. The present data are equally consistent with the possibilities that GH and/or isoproterenol activate protein kinase C, or that protein kinase C is constitutively active to some extent. It is likely that protein kinase C activity is permissive for, rather than a mediator of, the lipolytic actions of GH and isoproterenol.

Adipose Tissue↗