Search PubMedSearch

Biomedical subjects

M Allan

Publications and source records attributed to M Allan.

14 recordsLinked to original sources

Retinoids and retinoid-binding protein expression in rat adipocytes.

Adipose tissue has been reported to contain relatively high levels of the specific mRNA for retinol-binding protein (RBP) (Makover A., Soprano, D.R., Wyatt, M. L., and Goodman, D.S. (1989) J. Lipid Res. 30, 171-180). Studies were conducted to explore retinoid and retinoid-binding protein storage and metabolism in adipose tissue. In these studies, we measured RBP and cellular retinol-binding protein (CRBP) mRNA levels and retinoid levels in 6 adipose depots in male rats. Total RNA was isolated from inguinal, dorsal, mesenteric, epididymal, perinephric, and brown adipose tissue, and average RBP and CRBP mRNA levels were determined by Northern blot analysis. The relative levels of RBP mRNA in these 6 anatomically different adipose depots averaged, respectively, 6.3, 6.7, 16, 34, 37, and 21% of the level in a rat liver RNA standard. Retinoid levels in the 6 depots were similar and averaged approximately 6-7 micrograms of retinol eq/g of adipose tissue. Since adipose tissue contains several cell types, the cellular localizations of RBP and CRBP expression and retinoid storage were examined. RNA was prepared from isolated rat adipocytes and stromal-vascular cells. Cellular levels of the mRNAs for RBP, CRBP, apolipoprotein E (apoE), lipoprotein lipase, adipocyte P2, and adipsin were measured by Northern blot analysis. RBP was expressed almost exclusively in the adipocytes and only weakly in the stromal-vascular cells. Both CRBP and apoE mRNA levels were relatively high in the stromal-vascular cell preparations and only very low mRNA levels were found in the adipocytes. Lipoprotein lipase, adipsin, and adipocyte P2 mRNAs were found in substantial levels in both the adipocytes and stromal-vascular cells, but with higher levels present in the adipocytes. Cultured adipocytes synthesized RBP protein and secreted it into the medium. Only adipocytes (not stromal-vascular cells) contained retinol, at levels between 0.65-0.8 micrograms of retinol eq/10(6) cells. These studies demonstrate that adipocytes store retinoid and synthesize and secrete RBP, and suggest that rat adipocytes may be dynamically involved in retinoid storage and metabolism.

Adipose Tissue

Itraconazole versus ketaconazole in the treatment of oral and oesophageal candidosis in patients infected with HIV.

To determine the efficacy and toxicity of two systemically active antifungal agents in the treatment of buccal and oesophageal candidiasis 111 HIV-infected patients with microscopically-confirmed candidiasis were randomized to receive either 200 mg itraconazole once a day or 200 mg ketoconazole twice a day for 28 days in a double blind study. After 1 week of treatment, 75 and 82% of the patients on itraconazole and ketoconazole, respectively, had responded clinically. After 4 weeks of treatment, this had risen to 93% in each group. One patient discontinued itraconozole because of toxicity (rash), five patients discontinued ketaconazole (two nausea, two hepatotoxicity and one rash). Despite successful clinical and mycological clearance, 80% patients had a further episode of candidosis within the next 3 months.

Antifungal Agents

Interaction of epsilon-globin cis-acting control elements with erythroid-specific regulatory macromolecules.

We have used a competition assay to investigate the influence of erythroid-specific cellular factors on transcription from the human epsilon-globin major cap site promoter and the minor promoter located 200 base pairs (bp) upstream from the epsilon-globin cap site. In the human erythroid cell line K562, competition of the epsilon-globin major cap site promoter linked to the chloramphenicol acetyltransferase (CAT) gene (epsilon P-CAT) with the same promoter fragment linked to a neomycin resistance gene (epsilon P-NEO) leads to a reduction in CAT activity. This indicates the specific presence of K562 cells of factor(s) which interact with the 200-bp promoter fragment (isolated from the gene body or flanking sequences) to activate transcription from the epsilon-globin major cap site. Competition of the epsilon-globin major promoter (as epsilon P-CAT) with the upstream minor epsilon-globin promoter (as epsilon P2-NEO) also leads to a reduction in CAT activity, indicating that both promoters share erythroid-specific trans-acting factors. The reverse competition (epsilon P2-CAT with epsilon P-NEO) leads to an increase in CAT activity, suggesting that the existence of erythroid-specific factor(s) which repress transcription from the 200-bp-upstream epsilon-globin promoter.

Cell Line

Correlation between patterns of DNase I-hypersensitive sites and upstream promoter activity of the human epsilon-globin gene at different stages of erythroid development.

DNA 5' to the human epsilon-globin gene exhibits unique patterns of DNase I-hypersensitive sites (DHS) in three human erythroleukemic cell lines which represent the embryonic (K562), fetal (HEL), and adult (KMOE) stages of erythroid development. We have mapped 10 epsilon-globin DHS in K562 cells, in which the epsilon-globin gene is maximally active. Major sites are located -11.7, -10.5, -6.5, -2.2 kilobase pairs (kbp) and -200 base pairs (bp) upstream of the gene and directly over the major cap site. Minor sites are located -5.5, -4.5, and -1.48 kbp and -900 bp upstream of the cap site. In HEL cells, in which the epsilon-globin gene is expressed at extremely low levels, the -11.7-, -10.5-, -5.5-, -4.5-, and -2.2-kbp DHS are no longer detectable; the -200-bp site is approximately 300-fold less sensitive to DNase I; and the -1.48-kbp, -900-bp, and major cap site DHS are 3- to 4-fold less sensitive. Only the DHS located -6.5 kbp relative to the major cap site is detectable at all three stages of erythroid development, including KMOE cells in which epsilon-globin synthesis is undetectable. We suggest that this site may be implicated in maintaining the entire beta-globin cluster in an active chromatin conformation. The five DHS downstream of the -6.5-kbp element possess associated promoters. Thus two distinct types of DHS exist--promoter positive and promoter negative. In HEL cells, all the upstream promoters are inactivated, although the -1.48-kbp and -900- and -200-bp DHS are still present. This suggests that the maintenance of DHS and regulation of their associated promoters occur by independent mechanisms. The inactivation of the upstream promoters in HEL cells while the major cap site remains active represents a unique pattern of expression and suggests that HEL cells possess regulatory factors which specifically down regulate the epsilon-globin upstream promoters.

Blotting, Southern

Negative regulation of the human epsilon-globin gene by transcriptional interference: role of an Alu repetitive element.

The human epsilon-globin gene has a number of alternative transcription initiation sites which correspond with regions of DNase I hypersensitivity upstream of the canonical cap site. Transcripts originating from the promoters located -4.3/-4.5 and -1.48 kilobase pairs (kbp) and -900 and -200 base pairs (bp) upstream of the major epsilon-globin cap site can, at certain stages of erythroid differentiation, extend through the gene and are polyadenylated. The 350-bp PolIII transcripts, originating within the Alu repetitive element -2.2 kbp upstream of the cap site, extend in the opposite direction from the gene, are nonpolyadenylated, nucleus confined, and are detectable only in mature K562 cells or mature embryonic red blood cells where the epsilon-globin major cap site is maximally transcribed. Fragments containing the promoters located between -4.5 and -4.3 kbp upstream of the gene down regulate transcription from the epsilon-globin gene 20- to 30-fold in a transient expression assay in which both erythroid and nonerythroid cell lines were used. This occurs only when the direction of transcription from the -4.3/-4.5-kbp promoters is towards the gene, and we hypothesize that down regulation is caused by transcriptional interference. Fragments containing the Alu repetitive element -2.2 kbp upstream of the gene can overcome down regulation of the epsilon-globin gene by the -4.5-kbp element when interposed in the direct orientation between this element and the epsilon-globin gene.

Cell Line

A short, highly repetitive element in intron -1 of the human c-Ha-ras gene acts as a block to transcriptional readthrough by a viral promoter.

We have identified a short, highly repetitive element within intron -1 of the human c-Ha-ras gene. This element was found to be transcribed in both orientations and to be homologous to heterogeneous nonpolyadenylated transcripts. The repetitive element blocked transcriptional readthrough from a strong upstream viral promoter but allowed unimpaired readthrough from the c-Has-ras promoter. We suggest that it may serve to prevent excessive transcription into the coding region of the gene under such circumstances as viral insertion.

Cell Line

c-Ha-ras gene bidirectional promoter expressed in vitro: location and regulation.

Increased transcriptional activity of the c-Ha-ras gene product is correlated with induction of several important human tumor types. For this reason, we have investigated the nature of the c-Ha-ras promoter and the factors that regulate its expression. Using S1 and primer extension analysis of c-Ha-ras RNA from EJ cells, we have identified 18 initiation sites within an upstream exon (exon -1) whose 3' end (the donor splice site [D]) is located 1,105 base pairs (bp) upstream of the ATG codon. The furthest-upstream initiation site is located -191 bp relative to D, and the furthest downstream is located -16 bp relative to D. Transient expression assays, in which a series of mutants spanning this region were ligated to a promoterless chloramphenicol acetyltransferase vector, functionally confirmed the position and extent of this promoter. Mutational analysis further located a 47-bp element located between -243 and -196 relative to D that up-regulated transcriptional activity of the promoter region by 20- to 40-fold. This region contained both a GC box known to bind SP1 and a CCAAT box. Insertion of a simian virus 40 enhancer 5' to the promoter up-regulated transcription from each initiation site by approximately 10- to 20-fold. We have also localized, both by chloramphenicol acetyltransferase assay and by S1 analysis, a strong promoter operating in the direction opposite that of the gene and originating immediately 5' to the 47-bp regulatory region. The reverse promoter was found to have nine initiation sites between -248 and -278 relative to D.

Animals

Phenobarbital treatment and major depressive disorder in children with epilepsy.

The prevalence and severity of psychopathology in 15 epileptic patients treated with phenobarbital and 24 patients treated with carbamazepine were compared. The groups were similar across a wide range of demographic, seizure-related, and family-environmental variables. Patients treated with phenobarbital, when compared with those treated with carbamazepine, showed a much higher prevalence of major depressive disorder (40% v 4%, P = .02), and suicidal ideation (47% v 4%, P = .005) as determined by semistructured psychiatric interviews. The differential prevalence of depression between medication groups was only noted in those with a family history of a major affective disorder among first-degree relatives. Family discord and number of stressful life events were also associated with depression in this cohort. Patients treated with phenobarbital should be closely monitored for depression, and alternative treatments should probably be sought for patients with newly diagnoses epilepsy and a personal or family history of an affective disorder. The clinical and research implications of these findings are discussed.

Adolescent

Tissue specific transcription of the human epsilon-globin gene following transfection into the embryonic erythroid cell line K562.

We have introduced a plasmid containing the human epsilon-globin gene either stably or transiently into a number of erythroid or non-erythroid cell lines, and analysed the accuracy and efficiency of transcription. In non-erythroid cells (or in mouse erythroleukaemia (MEL) cells in which adult but not embryonic globin genes are expressed) transcription of the epsilon-globin gene occurs mainly from a site 200 bp upstream of the major cap site (the -200 cap site). In the human K562 cell line, in which the endogenous epsilon-globin gene is transcribed at high levels, transcription initiation from the introduced gene occurs mainly from the major cap site. Transcriptional activity of the epsilon-globin gene introduced into K562 cell is quantitatively similar to that of the endogenous gene. This suggests the presence (or absence) in K562 cells of factor(s) which activate (or repress) the epsilon-globin gene in a tissue specific manner.

Cell Line

Distant sequences which regulate globin genes.

Besides the major cap site, transcription of the human epsilon-globin gene initiates at several upstream sites, the furthest 4.5 kb away. The upstream initiation sites occur in regions of hypersensitivity to DNaseI. There is also a very prominent DNaseI hypersensitive site 6.5 kb upstream which corresponds to an unusual nucleotide sequence. Upstream promoters, particularly one 200 bp upstream can be regulated independently of the major cap site. This site behaves as if it were a unidirectional enhancer. A fragment upstream of the mouse beta-globin promoter acts as a negative regulator in cis; it contains a long stretch of alternating purine and pyrimidine bases. The significance of upstream regulatory sequences adjacent to globin genes is discussed.

Base Sequence