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S J Lu

Publications and source records attributed to S J Lu.

At least 19 recordsLinked to original sources

Reevaluation of the role of early trypsin activity in the transcriptional activation of the late trypsin gene in the mosquito Aedes aegypti.

In the female mosquito Aedes aegypti, trypsin expression is largely biphasic. Early trypsin synthesis, which is regulated at the translational level relative to feeding, peaks in the first few hours post-blood meal. Late trypsin expression is regulated at the transcriptional level, and peaks 18-24h post-blood meal. It was proposed that early trypsin activity released unknown factors during digestion of a meal that caused activation of transcription of the late trypsin gene. This connection between early trypsin activity and late trypsin expression was dependent on the fact that feeding a single trypsin inhibitor, soybean trypsin inhibitor (STI), which blocked early trypsin activity, also blocked late trypsin expression. We show in this study that feeding different trypsin inhibitors which effectively blocked early trypsin activity did not result in reduced late trypsin expression. We also found that a different lot of STI failed to cause inhibition of late trypsin transcription, although it was effective in inhibiting early trypsin activity. In addition, using RNAi methodology to reduce the level of early trypsin expression had no effect on the level of late trypsin expression. We conclude that early trypsin activity is not necessary for the transcriptional activation of late trypsin and that the previous results were due to the effect of a cytotoxic agent present in some, but not all preparations of STI.

Aedes↗

Lineage-specific mechanism of drug and radiation resistance in melanoma mediated by tyrosinase-related protein 2.

A major obstacle in the clinical management of malignant melanoma is its intrinsic resistance to chemotherapy and radiation therapy. Consequently, most patients with melanoma often do not respond to conventional anticancer therapy in a clinically significant manner. Recent advances in cancer research have provided new insights into the mechanisms of intrinsic resistance in melanomas. We have recently reported that the over-expression of tyrosinase-related protein 2 (TYRP2), an enzyme that is well characterized for its function in melanin synthesis, is associated specifically with resistance to DNA damaging drugs and radiation treatment. This review will summarize our findings as well as discuss the possible mechanisms by which TYRP2 over-expression contributes to intrinsic resistance in human malignant melanoma.

Antineoplastic Agents↗

Contiguous arrangement of p45 NFE2, HnRNP A1, and HP1 alpha on mouse chromosome 15 and human chromosome 12: evidence for suppression of these genes due to retroviral integration within the Fli-2 locus.

Fli-2 is a common site of proviral integration in multistage erythroleukemia cells induced by Friend murine leukemia virus (F-MuLV) or the polycythemia strain of Friend leukemia virus (FV-P). Previously, we reported that integration of Friend virus into the Fli-2 locus in CB3, an erythroleukemia cell line that harbors a homozygous inactivation of the Fli-2 locus, results in the loss of expression of two genes encoding the 45-kDa subunit of the erythroid-specific nuclear factor p45 NFE2 and the splicing factor HnRNP A1. Here, we report the identification of a third gene, Heterochromatin protein 1 (HP1alpha, also known as CBX5), which is located downstream of HnRNP A1, and p45 NFE2. Northern blot analysis revealed that the expression of HP1alpha, along with p45 NFE2 and HnRNP A1, is either undetectable or substantially reduced in CB3 cells, suggesting that HP1alpha expression is also regulated by proviral insertion within the Fli-2 locus in CB3 cells. Because p45 NFE2 was previously mapped to mouse chromosome 15, our results demonstrate that HP1alpha and HnRNP A1 are also located on mouse chromosome 15 and that the p45 NFE2, HnRNP A1, and HP1alpha genes are arranged contiguously. Contiguous arrangement of these three genes was also detected in man; this consequently localizes HP1alpha to human chromosome band 12q13.

Animals↗

Tyrosinase-related protein 2 as a mediator of melanoma specific resistance to cis-diamminedichloroplatinum(II): therapeutic implications.

A major obstacle in the systemic treatment of advanced malignant melanoma is its intrinsic resistance to conventionally used chemotherapeutic agents. In order to investigate the mechanisms of this intrinsic resistance, we have previously utilized retroviral insertional mutagenesis on an early-stage, drug sensitive human melanoma cell line (WM35) to establish mutated cell lines that exhibited increased resistance to cis-diammi-nedichloroplatinum(II) (CDDP). Here, we demonstrate that this increased resistance to CDDP is mediated by the over-expression of tyrosinase-related protein-2 (TYRP2), an enzyme that normally functions in the biosynthesis of the pigment, melanin. Northern and Western blot analyses revealed that the expression of TYRP2 in the virally-derived cell lines as well as in a panel of human melanoma cell lines positively correlated with their levels of resistance to CDDP. Furthermore, enforced expression of TYRP2 in WM35 cells by transfection elevated their resistance to CDDP. The increased CDDP resistance in the virally-derived clones and TYRP2 transfectants was accompanied by a reduction in CDDP-induced apoptosis. Interestingly, the virally-derived CDDP-resistant clones also showed cross resistance to carboplatin and methotrexate, but not taxol, suggesting that TYRP2 over-expression may confer resistance specifically to DNA damaging agents. Overall, these results demonstrate a novel mechanism of drug resistance in human melanoma cells that is mediated by the over-expression of TYRP2. Since TYRP2 is expressed only in cells of melanocytic lineage, this may represent the first report of a lineage-specific mechanism of drug resistance. In summary, these findings suggest a significant role for TYRP2 in the intrinsic drug resistance phenotype of human melanoma cells and may have important implications in the development of chemosensitization strategies for the clinical management of this disease.

Antineoplastic Agents↗

Elevated basal and thapsigargin-stimulated intracellular calcium of platelets and lymphocytes from bipolar affective disorder patients measured by a fluorometric microassay.

BACKGROUND: A number of investigators have reported finding elevated basal and stimulated intracellular calcium levels in the platelets or lymphocytes of bipolar disorder patients. METHODS: Intracellular calcium was measured by a micro fura-2 fluorometric method in the platelets and lymphocytes of 30 affective disorder patients and 14 control subjects. RESULTS: We observed significantly elevated basal calcium concentrations in bipolar patient platelets and lymphocytes compared to control subjects. Bipolar patient platelet calcium responses to thrombin, serotonin, and thapsigargin were also significantly greater than control subjects. The peak calcium levels of lymphocytes of bipolar patients were greater than control subjects only when stimulated by thapsigargin. There were significant differences between bipolar and unipolar patients in basal and thapsigargin-stimulated calcium measures but not between bipolar I and bipolar II patients. Unmedicated versus medicated calcium measures were not significantly different. We also found little correlation between calcium measures and the severity of mood rating. CONCLUSIONS: Using this method, we were able to confirm and extend the work of others, indicating altered intracellular calcium homeostasis in the blood cells of bipolar disorder patients. In addition, our data suggest that storage operated calcium channels may be the source of the elevated intracellular calcium in platelets and lymphocytes of bipolar patients.

Adult↗

Juvenile myelomonocytic leukemia (JMML) with the hematologic phenotype of severe beta thalassemia.

A 3-year-old Filipino-American child with recurrent fever, splenomegaly, anemia, and thrombocytopenia, was found to have a hemoglobin F level of 76.9%. His reticulocyte count was elevated (4.3%), and erythroblasts were present in his peripheral blood. The child's erythrocytes were microcytic (MCV 66.9 fl) but his serum ferritin level was normal. His bone marrow at initial presentation demonstrated normal cellularity without an increase in blast cells. The disease progressed with worsening anemia, leukocytosis, and thrombocytopenia, with increased blasts in his marrow and the appearance of a mediastinal mass. His liver, spleen, and lymph nodes were found to be infiltrated with myeloblasts, supporting a diagnosis of juvenile myelomonocytic leukemia (JMML). Analysis of the child's Hb F showed a Ggamma/Agamma ratio of 2.2, which was within the characteristic range for JMML. A globin synthesis study using blood reticulocytes showed an alpha/non-alpha globin synthesis ratio of 2.24, typical of severe homozygous beta thalassemia. Southern blot analysis of blood-leukocyte DNA from the patient and his parents demonstrated no apparent abnormality in the beta-globin gene promoter or coding regions. The elevated level of Hb F in this child with JMML appeared to be part of an acquired Cooley's anemia-like hematologic phenotype.

Child, Preschool↗

A naturally occurring amino acid substitution of the human serotonin 5-HT2A receptor influences amplitude and timing of intracellular calcium mobilization.

Recently, two naturally occurring amino acid substitutions were identified in the C-terminal region of the serotonin 5-HT2A receptor. One of these, His452Tyr, has a rarer allele Tyr frequency of 9%. If 452Tyr alters 5-HT2A function, it would thus be a candidate allele for human neurobehavioral variation. The present study was designed to evaluate the potential influence of the 452His and 452Tyr alleles on cellular 5-HT2A functions. Platelet 5-HT2A binding and 5-HT-induced Ca2+ response were compared in eight 452His/452His homozygous and eight 452His/452Tyr heterozygous individuals matched for sex, age, and diagnosis (all were patients with seasonal affective disorder). There was no difference in 5-HT2A binding measured using 125I-lysergic acid diethylamide. Nor were levels of G-protein subunits or PKC alpha, delta, epsilon, or zeta significantly altered. However, when Ca2+ response was stimulated by 2, 5, 10, or 25 microM 5-HT, significant differences were found. In 452His/452Tyr heterozygotes, 452Tyr was associated with both smaller peak amplitude in Ca2+ mobilization and a different time course of response, with slower peak latency and longer half-time in 452His/452Tyr heterozygotes compared with 452His/452His homozygotes. The overall difference in the response of the 5-HT2A receptor in individuals with 452Tyr was a blunting of the shape of the Ca2+ mobilization peak. The data reported here suggest that the primary sequence of this intracellular domain is important in function of the receptor and that the 452His and 452Tyr 5-HT2A alleles should be carefully evaluated for effects on human neurobehavioral variation.

Adult↗

Retroviral insertional mutagenesis as a strategy for the identification of genes associated with cis-diamminedichloroplatinum(II) resistance.

Expression of resistance to cis-diamminedichloroplatinum(II) (CDDP), one of the most effective chemotherapeutic drugs used to treat a variety of malignancies, remains a serious obstacle for improving cancer treatment. To study possible genetic mechanisms underlying the development of CDDP resistance, we have adopted the approach of retroviral insertional mutagenesis. An early-stage CDDP-sensitive human melanoma cell line, WM35, was infected with a defective amphotropic murine retrovirus (murine stem cell virus), and the pooled cells were subsequently selected for CDDP-resistant variants. Nine CDDP-resistant clones independently derived from murine stem cell virus-infected WM35 cells were analyzed and it was found that five of these clones acquired an identical retroviral integration site, designated as CDDP resistance locus 1 (CRL-1), as revealed by isolation of retroviral flanking sequences. Furthermore, using the flanking sequence as probe, we have detected a 3.5-4.0-kilobase message, the expression of which is strongly increased in clones carrying a rearranged CRL-1 locus. These results strongly suggest that overexpression of CRL-1 confers resistance to CDDP in these clones. In addition, the present study indicates that retroviral insertional mutagenesis represents a potential strategy to identify genes responsible for CDDP resistance and possibly other chemotherapeutic drugs as well.

Cisplatin↗

Comparison between short-term and long-term post-operative evaluation of sleep apnoea after uvulopalatopharyngoplasty.

For a long time uvulopalatopharyngoplasty (UPPP) has been used to treat the obstructive sleep apnoea syndrome (OSAS). The diverse surgical effects, the inadequate understanding of operation effect consistency, the possibility of disease progression, and the few reported papers for long-term evaluation after UPPP aroused our interest in designing this study. Fifteen OSAS patients who had undergone UPPP with pre-operative, initial post-operative and long-term post-operative polysomnographic studies were included in this study. Long-term post-operative polysomnography was undertaken more than five years after surgery. The polysomnographic evaluations included respiratory disturbance index (RDI), duration of saturation SaO2 < 85 per cent (DOS), and the lowest O2 saturation (LOS). Amongst them, 10 patients with initial post-operative RDI reduction > 50 per cent were considered responders. In these responders, the long-term follow-up results of all three parameters showed improvement compared to the pre-operative data. In a comparison between the initial and long-term post-operative sleep study results, LOS and DOS showed no significant difference. However, the long-term post-operative RDI result became significantly worse. More than 80 per cent of all cases had subjective symptomatic improvement in the long-term post-operative evaluation. The subjective improvement after operation is not adequately correlated to the polysomnographic result. We suggest that long-term follow-up for patients after UPPP is necessary.

Adult↗

Effect of dietary fat or tamoxifen on the expansion of cells harboring Ha-ras oncogenes in mammary glands from methylnitrosourea-treated rats.

Diets containing high levels of fat enhance the formation of methylnitrosourea (MNU)-induced mammary gland adenocarcinomas in rats, while administration of the antiestrogen tamoxifen decreases the incidence of these tumors. It is not known, however, at what stage during tumor development the fat or tamoxifen exert their effects. Here we have used a PCR/liquid hybridization and gel retardation assay to determine the effects of dietary fat and tamoxifen on the growth rate of cells harboring an Ha-ras oncogene in the mammary glands of rats at various times following MNU administration. Glands from animals on a high-fat diet had significantly higher mutant cell fractions than those on a low-fat diet at both 30 and 75 days following MNU treatment. In contrast, there was no difference between the mutant cell fractions of tamoxifen-treated animals and controls at either 30 or 70 days. These results suggest that dietary fat promotes tumor formation early in carcinogenesis by stimulating the growth of cells harboring Ha-ras mutations, while tamoxifen delays the appearance of tumors either by acting as a tumoristatic or tumoricidal agent, or by acting to eliminate or retard the growth of preneoplastic cells just prior to the emergence of tumors.

Animals↗

Retroviral integration within the Fli-2 locus results in inactivation of the erythroid transcription factor NF-E2 in Friend erythroleukemias: evidence that NF-E2 is essential for globin expression.

Activation of either Fli-1 or Spi-1 members of the ets family of transcription factors as a result of retroviral insertion and mutational inactivation of the p53 tumor suppressor gene play essential roles in the multistage erythroleukemias induced in mice by various strains of Friend virus. We have previously identified another common site for provirus integration, designated Fli-2 (Friend leukemia integration 2), in some erythroleukemia clones induced either by Friend murine leukemia virus (F-MuLV) or by the polycythemia-inducing strain of Friend virus complex (FV-P). Here we show that genomic sequences adjacent to Fli-2 correspond to the coding region of the erythroid-specific DNA binding protein NF-E2 p45. In one erythroleukemia cell line the expression of NF-E2 p45 is undetectable due to proviral integration in one allele and loss of the other allele. The complete loss of NF-E2 p45 in this cell line is associated with a drastic reduction in expression of the alpha- and beta-globin genes that were partially restored by reintroduction of the NF-E2 p45 gene. Taken together, these results provide direct evidence that NF-E2 gene is essential for globin transcription and suggest that perturbation in expression of this transcription factor may contribute to erythroleukemia progression.

Animals↗

The A1 and A1B proteins of heterogeneous nuclear ribonucleoparticles modulate 5' splice site selection in vivo.

Recent in vitro results suggest that the heterogeneous nuclear ribonucleoparticle (hnRNP) A1 protein modulates alternative splicing by favoring distal 5' splice site (5'SS) selection and exon skipping. We used a mouse erythroleukemia (MEL) cell line (CB3C7) deficient in the expression of hnRNP A1 to test whether variations in hnRNP A1 and AlB protein levels affected alternative splicing in vivo. In contrast to A1-expressing MEL cell lines, CB3C7 cells preferentially selected the proximal 13S and 12S 5'SS on the adenovirus E1A pre-mRNA. Transiently expressing the A1 or A1B cDNA in CB3C7 cells shifted 5'SS selection toward the more distal 9S donor site. A1 protein synthesis was required for this effect since the expression of a mutated A1 cDNA did not affect 5'SS selection. These results demonstrate that in vivo variations in hnRNP A1 protein levels can influence 5'SS selection.

Alternative Splicing↗

Mammary tumor induction by N-methyl-N-nitrosourea in genetically resistant Copenhagen rats.

The Copenhagen rat is completely resistant to mammary cancer induction by N-methyl-N-nitrosourea (MNU) when the carcinogen is administered during sexual development, a period when other strains of rats are normally susceptible to mammary gland carcinogenesis. Here we administered 30 mg/kg MNU i.p. to two groups of neonatal (2-3-day-old) Copenhagen rats. One group (group B, 18 animals) received no further treatment, while the other group (group C, 17 animals) received a second dose of 30 mg/kg MNU via the tail vein at 50 days of age. About 30% of the rats in group B and about 70% of those in group C developed mammary carcinomas before they were 1 year of age. About one-half of the tumors in both groups were cribriform adenocarcinomas and one-half were adenosquamous carcinomas. The latter tumor type has not been observed previously in susceptible rat strains. The ability to induce these mammary tumors in the Copenhagen rat suggests that the putative mammary carcinoma suppressor gene is functionally inactive in neonatal animals or is inactivated when these animals are treated with MNU.

Adenocarcinoma↗

Ha-ras oncogene activation in mammary glands of N-methyl-N-nitrosourea-treated rats genetically resistant to mammary adenocarcinogenesis.

A single dose of N-methyl-N-nitrosourea given to sexually immature female Buf/N rats produces a high incidence of mammary adenocarcinomas. A large percentage of these tumors contain the Ha-ras oncogene, activated by a G----A transition at the second nucleotide of codon 12. Copenhagen rats, on the other hand, are completely resistant to mammary tumor induction by a number of carcinogens, including N-methyl-N-nitrosourea. Here we show, using a sensitive method involving PCR, that codon 12 Ha-ras mutations occur in the mammary glands of both Buf/N and Copenhagen rats 30 days after N-methyl-N-nitrosourea treatment. These mutations were evenly distributed among individual mammary glands and were present in purified mammary epithelial cells. In Buf/N rats, the fraction of cells containing a mutated Ha-ras allele increased by a factor of 10-100 between 30 and 60 days, whereas in Copenhagen rats, there was no such increase during this time period. We conclude that the resistance of the Copenhagen rat to mammary carcinogenesis is not due to a defect in initiation but rather appears to be due to the inability of cells containing a mutated ras allele to undergo sustained clonal expansion.

Animals↗

ras oncogene activation in mammary carcinomas induced by N-methyl-N-nitrosourea in Copenhagen rats.

The occurrence of Ha-ras and Ki-ras oncogenes was investigated in mammary tumors produced by treating genetically resistant Copenhagen (Cop) rats with N-methyl-N-nitrosourea. G35-->A codon 12 mutations in both Ha-ras and Ki-ras genes were analyzed by a polymerase chain reaction/liquid hybridization and gel retardation assay. More than half of the adenocarcinomas analyzed contained an activated Ha-ras gene. This was also the predominant mutation in similar tumors from susceptible Buf/N rats, suggesting a common mechanism of initiation. In contrast, only two of 15 mammary adenosquamous carcinomas from the Cop rats contained an activated Ha-ras gene, suggesting a different initiation mechanism for most of these tumors. Ki-ras activation was found in none of five and one of five adenocarcinomas from Buf/N and Cop rats, respectively, and in none of 13 adenosquamous carcinomas from Cop rats. These results suggest that Ki-ras activation does not play a major role in the initiation of the mammary tumors.

Adenocarcinoma↗

Formation and repair of O6-methylguanine and methylation of the Ha-ras proto-oncogene by N-methyl-N-nitrosourea are not associated with mammary tumor resistance in the Copenhagen rat.

A high incidence of mammary adenocarcinomas is induced in sexually immature, female Buf/N rats by a single dose of N-methyl-N-nitrosourea (MNU). The Ha-ras gene is activated in a majority of these tumors. The Copenhagen (Cop) rat is completely resistant to mammary gland carcinogenesis by a number of carcinogens, including MNU. Here we show that MNU-treated Buf/N and Cop rats do not differ in the extent of formation and rate of repair of O6-methylguanine in DNA isolated from their mammary epithelial cells. Furthermore, we show that the transcriptional activities of the Ha-ras genes are similar in the mammary glands of Buf/N and Cop rats and that the extents of methylation by MNU of restriction fragments containing the Ha-ras gene from mammary gland DNA are not different for the two strains. Resistance of the Cop rat to mammary carcinogenesis, therefore, appears not to be due to a defect in the interaction of the carcinogen with the target DNA.

Animals↗