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Occurrence, prevalence and genetic environment of CTX-M beta-lactamases in Enterobacteriaceae from Indian hospitals.

OBJECTIVES: To determine occurrence, prevalence and CTX-M genotypes produced by Enterobacteriaceae from clinical samples from three geographically distant Indian hospitals and to detect linkage of IS26 with bla(CTX-M) and map its precise insertion position. METHODS: A total of 130, non-duplicate Escherichia coli and Klebsiella pneumoniae resistant to a third-generation cephalosporin (3GC) from three Indian centres were screened for extended-spectrum beta-lactamase (ESBL) production using phenotypic detection methods. All isolates were screened for bla(CTX-M) using multiplex PCR. Precise CTX-M genotype was identified using reverse-line hybridization. All CTX-M-producing isolates were screened for linkage of IS26 with bla(CTX-M). DNA sequencing was used to map the exact insertion position of this mobile element. RESULTS: Ninety-five of 130 3GC-resistant (73%) (73% of total E. coli, 72% of total K. pneumoniae) isolates were found to carry bla(CTX-M-15). No other CTX-M genotype was detected. IS26 linkage with bla(CTX-M-15) was detected in 31% of isolates carrying bla(CTX-M-15). DNA sequencing revealed variable insertion of this mobile element within tnpA of ISEcp1. RAPD-PCR typing demonstrated great diversity in isolates carrying bla(CTX-M-15); no predominant clone was identified. CONCLUSIONS: In contrast with other studies where greater diversity exists, CTX-M-15 was the only CTX-M ESBL produced in this Indian collection of unrelated E. coli and K. pneumoniae. This is the first systematic survey report from India detecting CTX-M-type beta-lactamases This is also the first report indicating such high mobility/diversity of insertion of IS26 in close association with bla(CTX-M) in a single bacterial collection.

Anti-Bacterial Agents↗

Homeless is required for RNA localization in Drosophila oogenesis and encodes a new member of the DE-H family of RNA-dependent ATPases.

The homeless (hls) gene of Drosophila is required for anteroposterior and dorsoventral axis formation during oogenesis. At a low frequency, females homozygous for mutations in hls generate early egg chambers in which the oocyte is positioned incorrectly within the cyst. At a high frequency, late-stage egg chambers exhibit a ventralized chorion. Sequence analysis of the hls cDNA predicts a protein with amino-terminal homology to members of the DE-H family of RNA-dependent ATPases and putative helicases. Similarity of 51% in the amino-terminal third of the protein was found to two yeast splicing factors, PRP2 and PRP16, and to Drosophila Maleless, which is required for dosage compensation. To analyze Hls function, RNA localization patterns were determined for seven different transcripts in hls mutant ovaries. Previtellogenic transport to the oocyte was unaffected for all transcripts examined. Transport and localization of bicoid and oskar messages during vitellogenic stages were strongly disrupted, and the distribution and/or quantity of gurken, orb, and fs(1)K10 mRNAs were also affected, but to a lesser degree. In contrast, hu-li tai shao and Bicaudal-D transcripts were transported and localized normally in hls mutants. In addition, Kinesin heavy chain:beta-Galactosidase fusion protein failed to localize correctly to the posterior of the oocyte in vitellogenic egg chambers. Examination of the microtubule structure with anti-alpha-Tubulin antibodies revealed aberrant microtubule organizing center movement and an abnormally dense cytoplasmic microtubule meshwork. We discuss potential roles for Hls in organizing a cytoskeletal framework essential for localizing specific RNAs.

Adenosine Triphosphatases↗

Secretory production of bioactive recombinant human granulocyte-macrophage colony-stimulating factor by a baculovirus expression system.

The proliferation and differentiation of hematopoietic cells are stimulated by a group of glycoproteins called colony stimulating factors (CSFs). Previously, we found that the human hepatoma cell line HA22T/VGH secreted a high level of human granulocyte-macrophage colony-stimulating factor (hGM-CSF). The cDNA of hGM-CSF, including the signal peptide sequence, was amplified from the total RNA of HA22T/VGH by a reverse-transcription polymerase chain reaction and was cloned into the pUC18 vector. After confirming the nucleotide sequence, the cDNA was inserted into a pVL1393 baculovirus transfer vector. The recombinant baculovirus carrying hGM-CSF cDNA was generated by co-transfecting the hGM-CSF recombinant transfer vector and BaculoGold baculovirus DNA into the Sf9 insect cells. The expected hGM-CSF transcript was detected in the recombinant virus-infected Sf9 cells. The conditioned media of the infected cells were analyzed by a slot-blot immunoassay. The results indicate that the infected insect cells produced and secreted hGM-CSF. According to colony forming assay, a maximum titer of 2.1 x 10(6). U ml-1 of hGM-CSF in the medium was obtained on the third day after infection.

Amino Acid Sequence↗

DNA-binding properties of the HMG domain of the lymphoid-specific transcriptional regulator LEF-1.

Lymphoid enhancer-binding factor 1 (LEF-1) is a pre-B and T lymphocyte-specific nuclear protein that participates in the regulation of the T-cell antigen receptor (TCR) alpha enhancer by binding to the nucleotide sequence 5'-CCTTTGAA. LEF-1 protein shares with the nonhistone high mobility group protein 1 (HMG-1) and several transcriptional regulators a single region of amino acid homology, termed the HMG box, which has been implicated in DNA binding. Here, we report the biochemical analysis of the interaction of this novel structural motif with DNA. First, amino- or carboxy-terminal truncations of the LEF-1 polypeptide delineated the HMG box as the DNA-binding domain. We purified to homogeneity a LEF-HMG domain peptide expressed in Escherichia coli and determined the equilibrium constant for specific binding to DNA as 1 x 10(-9) M. Second, cotranslation of wild-type and various truncated LEF-1 polypeptides did not generate any DNA-binding heterodimers, suggesting that LEF-1 can bind DNA as a monomer. Third, methylation interference analysis indicated that the HMG domain specifically contacts DNA on one side of the double helix. Finally, changes of amino acids that are conserved among various members of the family of HMG-box proteins decreased the affinity of DNA binding by one to three orders of magnitude. Together, these data define the characteristics of specific DNA-binding by the HMG domain of LEF-1.

Amino Acid Sequence↗

The Pseudomonas aeruginosa PA01 gene collection.

Pseudomonas aeruginosa, a common inhabitant of soil and water, is an opportunistic pathogen of growing clinical relevance. Its genome, one of the largest among bacteria [5570 open reading frames (ORFs)] approaches that of simple eukaryotes. We have constructed a comprehensive gene collection for this organism utilizing the annotated genome of P. aeruginosa PA01 and a highly automated and laboratory information management system (LIMS)-supported production line. All the individual ORFs have been successfully PCR-amplified and cloned into a recombination-based cloning system. We have isolated and archived four independent isolates of each individual ORF. Full sequence analysis of the first isolate for one-third of the ORFs in the collection has been completed. We used two sets of genes from this repository for high-throughput expression and purification of recombinant proteins in different systems. The purified proteins have been used to set up biochemical and immunological assays directed towards characterization of histidine kinases and identification of bacterial proteins involved in the immune response of cystic fibrosis patients. This gene repository provides a powerful tool for proteome- and genome-scale research of this organism, and the strategies adopted to generate this repository serve as a model for building clone sets for other bacteria.

Bacterial Proteins↗

A large pheromone and receptor gene complex determines multiple B mating type specificities in Coprinus cinereus.

Pheromone signaling plays an essential role in the mating and sexual development of mushroom fungi. Multiallelic genes encoding the peptide pheromones and their cognate 7-transmembrane helix (7-TM) receptors are sequestered in the B mating type locus. Here we describe the isolation of the B6 mating type locus of Coprinus cinereus. DNA sequencing and transformation analysis identified nine genes encoding three 7-TM receptors and six peptide pheromone precursors embedded within 17 kb of mating type-specific sequence. The arrangement of the nine genes suggests that there may be three functionally independent subfamilies of genes each comprising two pheromone genes and one receptor gene. None of the nine B6 genes showed detectable homology to corresponding B gene sequences in the genomic DNA from a B3 strain, and each of the B6 genes independently alter B mating specificity when introduced into a B3 host strain. However, only genes in two of the B6 groups were able to activate B-regulated development in a B42 host. Southern blot analysis showed that these genes failed to cross-hybridize to corresponding genes in the B42 host, whereas the three genes of the third subfamily, which could not activate development in the B42 host, did cross-hybridize. We conclude that cross-hybridization identifies the same alleles of a particular subfamily of genes in different B loci and that B6 and B42 share alleles of one subfamily. There are an estimated 79 B mating specificities: we suggest that it is the different allele combinations of gene subfamilies that generate these large numbers.

Amino Acid Sequence↗

Membrane-anchored incorporation of a foreign protein in recombinant influenza virions.

The RNA polymerase I system for in vivo synthesis of recombinant influenza vRNA molecules was used for the expression of a chimeric protein, consisting of the 341-amino-acid ectodomain of the glycoprotein E2 of classical swine fever virus and the 37-amino-acid C-terminal membrane anchor of the influenza virus hemagglutinin (HA). During infection with an influenza A helper virus the amplified pseudo-viral RNA was packaged into progeny virions together with influenza vRNA segments. The foreign fusion protein E2-HA was shown to be physically incorporated into the viral envelope. Incorporation of a third major glycoprotein into the envelope did not affect biological functions of HA and neuraminidase that are required for the generation of infectious virus particles. Based on mutational analyses of the cytoplasmic tail of E2-HA fusion proteins three modes of interaction during virus budding have been observed: nonspecific low-level incorporation (truncated tails), specific full-level incorporation (wild-type amino acid sequence or minor variations of it), and exclusion from incorporation (elongated tails).

Amino Acid Sequence↗

Dimorphism and intergenic recombination within the microneme protein (MP-1) gene family of Plasmodium knowlesi.

The microneme protein-1 (MP-1) of Plasmodium knowlesi and Plasmodium vivax facilitates merozoite invasion of the erythrocyte by binding to Duffy blood group antigens. Since this protein is important in the invasion process and is a potential vaccine candidate, it is important to understand the nature of diversity within the MP-1 gene. Nine MP-1 gene sequences were compared from 2 isolates of P. knowlesi and a laboratory strain of P. vivax. The MP-1 genes of P. knowlesi were dimorphic based upon the central hydrophilic regions (III and IV) that were well conserved as alpha and beta types. Other regions were conserved among all P. knowlesi genes except for the amino cysteine-rich region (region II), a region predicted to be the initial contact site of the erythrocyte binding domain. Two distinct sequence motifs and part of a third were identified in region II that had a common identity of 68%. In some MP-1 genes recombination had occurred to create hybrids of the two sequence types. All cysteines and aromatic amino acids of region II were conserved in all genes or within a sequence type. There were 2 apparent recombination points within region II where switching occurred between sequence types. Another possible recombination site, identified as a common sequence motif, was identified in the middle of the hydrophilic region, at the beginning of regions III or IV. Nonsynonymous mutations within region II were biased towards radical amino acid changes, especially towards the carboxyl third, where there were 3 distinct types of sequence. Most synonymous and nonsynonymous nucleotide mutations within regions I, V, and VI were infrequent, individual events and not associated with any particular sequence type. Cysteine-rich regions of the P. vivax MP-1 gene compared to the P. knowlesi genes were characterized by an increased number of synonymous and nonsynonymous changes. This data identifies 2 mechanisms for generation of diversity in the MP-1 gene family, intergenic recombination and nucleotide mutations. Both may be mechanisms the parasite uses to evade the host immune response or to alter erythrocyte receptor specificity.

Amino Acid Sequence↗

Early and multiple Ac transpositions in rice suitable for efficient insertional mutagenesis.

A GFP excision assay was developed to monitor the excision of Ac introduced into rice by Agrobacterium-mediated transformation. The presence of a strong double enhancer element of the CaMV 35S promoter adjacent to the Ac promoter induced very early excision, directly after transformation into the plant cell, exemplified by the absence of Ac in the T-DNA loci. Excision fingerprint analysis and characterization of transposition events from related regenerants revealed an inverse correlation between the number of excision events and transposed Ac copies, with single early excisions after transformation generating Ac amplification. New transpositions were generated at a frequency of 15-50% in different lines, yielding genotypes bearing multiple insertions, many of which were inherited in the progeny. The sequence of DNA flanking Ac in three representative lines provided a database of insertion tagged sites suitable for the identification of mutants of sequenced genes that can be examined for phenotypes in a reverse genetics strategy to elucidate gene function. Remarkably, two-thirds of Ac tagged sites showing homology to sequences in public databases were in predicted genes. A clear preference of transposon insertions in genes that are either predicted by protein coding capacity or by similarity to ESTs suggests that the efficiency of recovering knockout mutants of genes could be about three times higher than random. Linked Ac transposition, suitable for targeted tagging, was documented by segregation analysis of a crippled Ac element and by recovery of a set of six insertions in a contiguous sequence of 70 kb from chromosome 6 of rice.

Base Sequence↗

Mutation detection for exons 2 to 10 of the polycystic kidney disease 1 (PKD1)-gene by DGGE.

The PKD1-gene encodes a 14 kb transcript spanning a 50 kb genomic interval. Two-thirds of the gene is reiterated at another locus on the same chromosome. Using Long Range PCR with primers in intron 1 and exon 11, 6.8 kb PKD1 specific fragments were generated on genomic DNA. These products were used as templates for nested PCR's to screen exons 2-10 by Denaturing Gradient Gel Electrophoresis (DGGE). Upon analysis of 36 patients, a total of 11 different sequence variants were observed: A nonsense mutation in exon 2, a frameshift mutation in exon 8 and furthermore, two amino acid changes, two silent polymorphisms and five intronic variants.

Adult↗

[Re-amplification of differentially expressed mRNA fragments of head-neck cancers without cloning].

BACKGROUND: mRNA expression of healthy and malignant cells can be compared to each other by employing the "differential display" (DD) technique. Most studies describe sequence analysis of differentially expressed fragments after reamplification by a second round of PCR and subsequent molecular cloning to gain a sufficient amount of DNA for sequencing. The aim of this study was to show whether a sufficient amount of differentially expressed mRNA of squamous cell carcinoma cells of the head and neck region can be generated by PCR alone without cloning steps. MATERIAL AND METHODS: mRNA isolated from cultivated keratinocytes and squamous cell carcinoma cells was reverse transcribed into cDNA which was amplified with PCR. Differentially expressed fragments detected after gel electrophoresis were isolated from the gel and reamplified in a second PCR. The resulting cDNA amounts of the second PCR were suitable for cloning but not for direct sequencing. A third round of PCR with the undiluted final product of the second PCR as template regularly failed. Dilutions of the second PCR products between 1:10 and 1:10(10) were prepared. The third round of PCR was carried out with these various template concentrations. RESULTS: A sufficient amount of differentially expressed fragments for sequencing procedures resulted when dilutions of the second PCR products ranging from 1:10(2) to 1:10(7) were used as templates in the third round of PCR. CONCLUSION: Modifications of PCR parameters provide high DNA copy numbers of differentially expressed mRNA fragments from squamous cell carcinoma cells of the upper aerodigestive tract in amounts that are needed for sequence analysis. This may make it possible to avoid labor-intensive cloning procedures requiring high safety standards.

Base Sequence↗

Isoforms of gp138, a cell-fusion related protein in Dictyostelium discoideum.

Sexual development of Dictyostelium discoideum is a unique and useful system for the study of sexual phenomena. We have been studying molecular mechanisms of sexual cell fusion in D. discoideum and have identified several relevant cell-surface proteins. One of the proteins, gp138, was identified as a target molecule for fusion-blocking antibodies, and two genes for gp138, GP138A and GP138B, were cloned. The participation of gp138 in the sexual cell fusion was confirmed by antisense RNA mutagenesis, but it is unclear which of the genes encodes gp138. Moreover, the presence of a third gene for gp138 was indicated by gene disruption. In the present study, we generated strains of D. discoideum overexpressing either GP138A or GP138B to investigate the products of these genes. The transformants overexpressing GP138A and GP138B overproduced glycoproteins with molecular masses of 135 and 130 kDa, respectively. Although their molecular masses were different from that of gp138, the results of peptide mapping and amino acid sequencing showed that they are related to proteins, suggesting that the proteins encoded by GP138A and GP138B are isoforms of gp138 protein.

Amino Acid Sequence↗

Selection on the protein-coding genes of the TBE1 family of transposable elements in the ciliates Oxytricha fallax and O. trifallax.

TBE1s are "cut-and-paste" transposable elements found in high copy number in the germline genomes of the ciliates Oxytricha fallax and O. trifallax. TBE1 "family" sequence (sequence of mixed polymerase chain reaction products generated using primers that match roughly half the TBE1s in host whole-cell DNA) was obtained from both host species. Although family sequence autoradiograms represent thousands of different elements, they are as legible as those representing corresponding sequences of a single TBE1, implying that ideal polymorphisms are rare within the genes examined. Nucleotide polymorphisms among TBE1s (indicated by ambiguities in family sequence) are far more common at third than at first or second positions of codons of genes, implying that selection has conserved the amino acid sequences of these genes in the majority of TBE1s. Portions of the transposase gene and another TBE1 gene have been sequenced from 10 individual TBE1s. None of these portions is interrupted by stop codons or frameshifts, and, for both genes, pairwise comparisons of these sequences show that nonsynonymous differences are significantly less common than synonymous differences, again implicating conservative selection Phylogenetic analysis shows that multiple divergent lineages of TBE1s have evolved under this selection within O. fallax. All these results are unexpected for cut-and-paste transposons in eukaryotic hosts: since transposase encoded by intact elements presumably acts in trans, it can duplicate mutant copies (those that do not encode functional transposase) found in the same genome, and thus no selection is expected to maintain the transposase gene. The selection demonstrated here could act at transposition (if functional TBE1s are preferentially transposed) or at the level of the host (if the host's fitness depends on functional TBE1 genes). TBE1-encoded proteins might be responsible for the precise excision of TBE1s that occurs during development of the host somatic nucleus; selection on hosts for uninterrupted somatic genes would then translate into selection for TBE1 protein-coding competence. We suggest a method for distinguishing between these two classes of explanations by finding and analyzing divergent alleles of ancestral transposable element insertions.

Animals↗

Aromatase inhibitors in early breast cancer therapy: a variety of treatment strategies.

Until recently, standard endocrine therapy for estrogen receptor-positive early breast cancer in the preoperative neoadjuvant and postoperative adjuvant settings was the selective estrogen receptor modulator tamoxifen. An alternate therapeutic approach is to suppress total-body estrogen synthesis using an aromatase inhibitor. The highly potent and specific third-generation aromatase inhibitors (anastrozole, exemestane and letrozole) have consistently demonstrated improved efficacy over tamoxifen in large randomised neoadjuvant and adjuvant clinical trials. As neoadjuvant therapy, compared with tamoxifen, all three aromatase inhibitors significantly improved breast-conserving surgery rates, but only letrozole achieved a significantly higher overall response rate. These agents have also been evaluated in three adjuvant strategies: instead of tamoxifen for 5 years, sequenced after 2-3 years of tamoxifen, or as extended adjuvant therapy following a full 5-year course of tamoxifen. In all cases, the aromatase inhibitor was significantly more effective in reducing the risk of recurrence, compared with tamoxifen in the first two approaches and with placebo or no treatment as extended therapy. Long-term aromatase inhibitor treatment is associated with less endometrial cancer, thromboembolic events and strokes than tamoxifen, but more musculoskeletal disorders and bone loss. Further investigation is focusing on identification of the patient subgroups most likely to benefit from each of these adjuvant therapy options.

Aromatase Inhibitors↗

Sampling methods in behavior research.

Animals perform a continuous stream of behavior throughout their lives. Because their behavior is not random, appropriate sampling methods can be used to obtain data that accurately reflect the actual behavior and are valid for answering research questions. Answering questions related to several variables assists in narrowing the choices of sampling methods. First, a determination must be made of what behaviors to measure. If the behaviors are few and easily measured, then All Occurrences Sampling is the method of choice because it generates accurate frequency and duration data through continuous recording. Sequence and Sociometric Matrix Sampling are specialized types of All Occurrences Sampling that are restricted to sampling intra- or interindividual sequences and social interactions (e.g., agonistic), respectively. Second, if who (e.g., specific individual, sex, or genotype) performs the behavior is a major component of the research question, then consideration should be given to Focal Animal (Pair, Group) Sampling. Third, if when or where the behavior is performed is of interest (e.g., activity budget), then Instantaneous or Scan Sampling can often be effective. Ad libitum Sampling does not produce valid data for analyses, but it is useful when formulating and fine-tuning research questions. One-Zero Sampling is not recommended except when the research question relates to the presence or absence of behaviors only. Other factors to consider in selecting a sampling method are duration of the behavior (event or state), desired scale of measurement (nominal, ordinal, interval, or ratio), and logistics (e.g., time, and equipment and facilities available).

Animals↗

Extended-spectrum beta-lactamases: an actual problem of hospital microbiology (a review).

Although there is a variety of mechanisms of bacterial resistance to beta-lactam antibiotics, the most important one is production of beta-lactamases inactivating penicillins and cephalosporins. The classification of beta-lactamases is based on biochemical, enzymological (i.e. molecular structure, inhibitory property, substrate-profile, relative rate of hydrolysis) and immunological characters. Extended-spectrum beta-lactamases (ESBLs) can be derived from TEM or SHV enzymes. These enzymes have now been sequenced and it has been found that relatively few point mutations have occurred in the gene of the TEM and SHV type enzymes. These point mutations clustered in five areas of the gene. The amino acid mutations can alter the conformation, the active site and change the hydrance of beta-lactamase-cephalosporin binding capacity. So the enzyme is able to bind and hydrolyse the third generation cephalosporins. Successive mutation interacted radically increasing the binding capacity of enzymes and confer resistance to newer cephalosporins. The use of these drugs provides a strong selective pressure to develop these mutations. Sporadic nosocomial outbreaks due to strains producing an ESBL led to an epidemic problem in some hospitals resulting in a concurrent dissemination of genes, plasmids or strains. Clinical epidemiological importance and role of ESBLs and emergence of multiply resistance of bacteria of nosocomial importance are discussed in this brief.

Aminohydrolases↗

Two divergent routes of evolution gave rise to the DRw13 haplotypes.

The HLA class II genes and haplotypes have evolved over a long period of evolutionary time by mechanisms such as gene conversion, reciprocal recombination and point mutation. The extent of the diversity generated is most clearly evident in an analysis of the HLA class II alleles present within DRw13 haplotypes. This study uses cDNA sequencing to examine the first domains of DRB1, DRB3, DQA1, and DQB1 alleles from several American black individuals expressing seven different DRw13 haplotypes, five with undefined HLA-D specificities (i.e., not Dw18 or Dw19). Two new DRw13 alleles described in this study are the first examples of convergent evolution of DR alleles in which gene conversion has apparently combined segments of DRB1 alleles encoding DRw11 and DRw8 to generate two new DRB1 alleles, DRB1*1303 and DRB1*1304, that encode molecules bearing serologic determinants of a third allele, DRw13. These new DRw13 alleles are found embedded in haplotypes of DRw11 origin distinct from haplotypes encoding previously identified DRw13 alleles, DRB1*1301 and DRB1*1302. These data suggest that two evolutionary pathways may have given rise to two subgroups of alleles encoding molecules that share DRw13 serologic determinants yet which possess different structural and, likely, functional motifs. Reciprocal gene recombination events resulting in different DR, DRw52 and DQ allele combinations also appear to have played a crucial role in augmenting the level of diversity found in DRw13 haplotypes. Recombination has resulted in the association of one of the new DRw13 alleles with a DQw2 allele normally found associated with DR7 and the association of the DRw52c-associated DRw13 allele (DRB1*1302) with three different DQw1 alleles. The seven DRw13 haplotypes that have resulted from the effect of recombination on haplotypes formed by the two pathways of DRw13 allelic diversification have resulted in different repertoires of class II molecules and, most likely, different immune response profiles in individuals with these haplotypes.

Alleles↗

Non-enzymatic triggering of the ceramide signalling cascade by solar UVA radiation.

Ceramide is a key component of intracellular stress responses. Evidence is provided for a novel mechanism of ceramide formation that mediates solar ultraviolet (UV) A radiation-induced expression of the intercellular adhesion molecule (ICAM)-1. Similarly to UVA radiation, ceramide stimulation of human keratinocytes induced ICAM-1 mRNA expression and activated the ICAM-1 promoter through transcription factor AP-2. Ceramide-activated AP-2 and ceramide-induced ICAM-1 reporter gene activation were abrogated through deletion of the AP-2 binding site. UVA radiation increased the level of ceramide in keratinocytes and inhibition of sphingomyelin synthesis prevented UVA radiation-induced ICAM-1 expression. Hitherto, two pathways have been identified for ceramide accumulation: hydrolysis from sphingomyelin through neutral and acid sphingomyelinases, and de novo synthesis by ceramide synthase. UVA radiation did not activate any of these enzymes. Ceramide generation in UVA-irradiated cells, however, was inhibited by singlet oxygen quenchers and mimicked in unirradiated cells by a singlet oxygen-generating system. In addition, UVA radiation and singlet oxygen both generated ceramide in protein-free, sphingomyelin-containing liposomes. This study indicates that singlet oxygen triggers a third, non-enzymatic mechanism of ceramide formation.

Base Sequence↗