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Biomedical subjects

M M Sanders

Publications and source records attributed to M M Sanders.

At least 19 recordsLinked to original sources

Alterations in chromatin structure are implicated in the activation of the steroid hormone response unit of the ovalbumin gene.

Hormone-responsive genes rely on complex regulatory elements known as hormone response units to integrate various regulatory signals. Characterization of the steroid-dependent regulatory element (SDRE) in the check ovalbumin gene (--892 to --796) suggests that it functions as a hormone response unit. Previous studies using gel mobility shift assays and several types of footprinting analyses demonstrated that proteins bind to this entire element in vitro even in the absence of steroid hormones. However, the genomic footprinting experiments described herein indicate that the binding of three different proteins or protein complexes to the SDRE requires estrogen and corticosterone, suggesting that the chromatin structure of this site is restricted in vivo. Transfection experiments using linker scanning and point mutations support the contention that the binding of these three complexes is essential for induction of the ovalbumin gene by steroid hormones. In addition, functional analyses suggest that a fourth complex is also necessary for maximal induction. These and other data suggest that the SDRE functions as a hormone response unit to coordinate signals generated by two steroid hormones.

Animals↗

The COUP-adjacent repressor (CAR) element participates in the tissue-specific expression of the ovalbumin gene.

The ovalbumin (Ov) gene is an excellent model for the study of tissue-specific gene regulation as it is only active in the estrogen-stimulated oviduct. Previous studies have demonstrated that the negative regulatory element (NRE) in the Ov gene 5'-flanking region is responsible for silencing the gene in oviduct in the absence of steroids. Linker scanning analysis defined an element within the NRE designated the COUP-adjacent repressor (CAR) element as a repressor of Ov gene expression. However, the role of the CAR element in non-oviduct tissues has not been addressed. Using transient transfection analysis of various Ov 5'-flanking region constructs into the estrogen-responsive chicken hepatocyte cell line LMH/2A, we demonstrate that Ov gene expression is not induced by estrogen and that an active repressor element exists in the NRE. Deletion analysis indicates that the region from -134 to -87, which includes the CAR element, mediates this repression. Mutation of the CAR element relieves repression, leading to high levels of gene expression. These data support a model where the inhibition of Ov gene expression in non-oviduct cells is a combination of the lack of essential positive factors and the presence of an active repressor, which binds to the CAR element.

Animals↗

Repression of chick multidrug resistance-associated protein 1 (chMRP1) gene expression by estrogen.

Although a number of genes have been identified whose transcriptional activities are stimulated by estrogen, relatively few have been discovered that are repressed. In an effort to determine whether estrogen can directly repress gene expression, attempts were made to identify genes that are direct targets of the estrogen receptor and whose activities are repressed by it. Because the development and differentiation of the chick oviduct are exquisitely dependent upon estrogen, this seemed an appropriate model system for testing this hypothesis. RNA was isolated from estrogen-treated and estrogen-withdrawn chick oviducts and was subjected to differential display analysis. Surprisingly, one of the products repressed by estrogen encoded the chick homolog of the multidrug resistance-associated protein 1 (MRP1) gene. Further cloning resulted in a chick MRP1 (chMRP1) cDNA clone that is 72% identical with human MRP1. Translation of the chMRP1 sequence indicates a 77% amino acid identity with both the human and mouse MRP1 proteins. Treatment of estrogen-withdrawn chicks with 17beta-estradiol decreased chMRP1 mRNA levels to 50% within 30 min and to 70% by 1h, which is comparable to the level observed with chronic repression by estrogen. ChMRP1 mRNA is present in many other tissues, including the heart, lung, brain, kidney, skeletal muscle, and intestine, but is undetectable in the liver. This study indicates that in estrogen-responsive tissues such as chick oviduct, the regulation of chMRP1 gene expression is controlled by estrogen.

ATP-Binding Cassette Transporters↗

COUP-TF plays a dual role in the regulation of the ovalbumin gene.

The ovalbumin (Ov) gene contains a number of regulatory elements that control its transcriptional activity and restrict expression to avian oviduct. One major regulatory region, the steroid-dependent regulatory element (SDRE), is required for induction by estrogen and corticosterone. Another region, the negative regulatory element (NRE), downstream of the SDRE, acts primarily to repress gene expression. In addition, experiments within indicate that the binding site for the COUP transcription factor (COUP-TF) is also required for Ov gene transcription. To examine the interactions involving the SDRE, the NRE, and the COUP binding sites on Ov gene transcription, mutations in these regions were made and transfected into primary oviduct cell cultures. These experiments show that without the NRE, the SDRE is sufficient for induction by estrogen and corticosterone, irrespective of the COUP site. However, with the NRE intact, the COUP site is required for steroid induction, although without the NRE, the COUP site attenuates transcriptional activity. More interestingly, overexpression of COUP-TF1 with the Ov wild-type reporter construct alleviates the requirement for steroid hormones. These results demonstrate that the COUP site is essential and has a dual role in Ov gene transcription and that steroid hormones might directly or indirectly regulate the activity of COUP-TF1.

Animals↗

Estrogen modulates HNF-3beta mRNA levels in the developing chick oviduct.

Steroid hormones are involved in many physiological processes, including tissue-specific gene expression, homeostasis, and development. The chick oviduct represents an excellent system in which to study many of these events, as it is highly steroid responsive. Here, we report the cloning of chick HNF-3beta from an oviduct cDNA library and its expression pattern in adult tissues and in the developing oviduct in response to estrogen treatment. Overall, cHNF-3beta was expressed at high levels in the immature chick oviduct and lung and, to a lesser extent, in the liver, kidney, and muscle. This expression pattern is divergent from that of mammalian HNF-3beta, which is not expressed in kidney or muscle. Furthermore, several lengths of cHNF-3beta mRNA transcripts were detected that were expressed tissue specifically. Interestingly, cHNF-3beta mRNA levels were differentially influenced by estrogen as a result of a post-transcriptional effect on the cHNF-3beta message in some tissues. Finally, a role for cHNF-3beta is proposed in the estrogen-stimulated differentiation and development of the oviduct, as cHNF-3beta mRNA expression is induced in the early stages of oviduct development and declines as the animal becomes sexually mature.

Amino Acid Sequence↗

Estrogen opposes the apoptotic effects of bone morphogenetic protein 7 on tissue remodeling.

Interactions between estrogen and growth factor signaling pathways at the level of gene expression play important roles in the function of reproductive tissues. For example, estrogen regulates transforming growth factor beta (TGFbeta) in the uterus during the proliferative phase of the mammalian reproductive cycle. Bone morphogenetic protein 7 (BMP-7), a member of the TGFbeta superfamily, is also involved in the development and function of reproductive tissues. However, relatively few studies have addressed the expression of BMP-7 in reproductive tissues, and the role of BMP-7 remains unclear. As part of an ongoing effort to understand how estrogen represses gene expression and to study its interactions with other signaling pathways, chick BMP-7 (cBMP-7) was cloned. cBMP-7 mRNA levels are repressed threefold within 8 h following estrogen treatment in the chick oviduct, an extremely estrogen-responsive reproductive tissue. This regulation occurs at the transcriptional level. Estrogen has a protective role in many tissues, and withdrawal from estrogen often leads to tissue regression; however, the mechanisms mediating regression of the oviduct remain unknown. Terminal transferase-mediated end-labeling and DNA laddering assays demonstrated that regression of the oviduct during estrogen withdrawal involves apoptosis, which is a novel observation. cBMP-7 mRNA levels during estrogen withdrawal increase concurrently with the apoptotic index of the oviduct. Furthermore, addition of purified BMP-7 induces apoptosis in primary oviduct cells. This report demonstrates that the function of BMP-7 in the oviduct involves the induction of apoptosis and that estrogen plays an important role in opposing this function.

Amino Acid Sequence↗

Bombesin inhibits apoptosis in developing fetal rat lung.

We have shown recently that apoptosis occurs during fetal and postnatal lung development. Our hypothesis that branching morphogenesis occurs through a delicate balance of cell proliferation and apoptosis predicts that substances that enhance branching of the airways would affect both cell proliferation and apoptosis in the lung. Bombesin-like peptides have a mitogenic effect on bronchial epithelium and fibroblasts, and bombesin has been shown to enhance branching morphogenesis in fetal lung. We used organ cultures of 16-day gestation fetal rat lung to study the effects of bombesin on apoptosis. Cultures were incubated in serumless medium alone or exposed to 1microM bombesin for 0-48 h. Levels of apoptosis were quantified using the TUNEL assay and expressed as percentage of apoptotic cells in paraffin sections of explants. Bombesin significantly inhibited apoptosis in fetal lung mesenchyme 48 h in culture by more than 50% (p < 0.05). The effects of bombesin on apoptosis were prevented completely if explants were exposed to the specific bombesin receptor antagonist, [D-Phe12]bombesin. To examine if the absence of serum in the media could have accounted for some of these effects, explants were cultured for 48 h in serumless medium, medium containing 10% fetal bovine serum, serumless medium with 1 microM bombesin, or medium containing both 10% fetal bovine serum and 1 microM bombesin. The addition of fetal bovine serum to the media reduced apoptosis significantly. The effect of fetal bovine serum on apoptosis was additive with bombesin. We conclude that bombesin inhibits apoptosis in developing fetal rat lung mesenchyme through its interaction with the bombesin receptor.

Animals↗

Relationship of amniotic fluid markers of intra-amniotic infection with histopathology in cases of preterm labor with intact membranes.

OBJECTIVE: To evaluate the correlation of amniotic fluid (AF) markers (AFMs) of intra-amniotic infection with histopathologic findings in cases of preterm labor with intact membranes, between 22 and 36 weeks' gestation. STUDY DESIGN: We reviewed the charts of patients admitted in preterm labor with intact membranes between January 1993 and December 1996. Those having amniocentesis were identified, and AFMs were compared with histopathology in patients who delivered within 48 hours of the amniocentesis. The AFMs evaluated were glucose, polymorphonuclear leukocytes, Gram stain, and culture. All placentae were reviewed by a single pathologist blinded to the AF findings. Histologic evidence of acute inflammation was defined by findings of both subchorial intervillositis and marginating choriodeciduitis. The sensitivities, specificities, and positive and negative predictive values of the various AFMs were calculated. RESULTS: Of 556 women with intact membranes presenting in preterm labor, 181 (32.6%) had amniocentesis and 88 delivered within 48 hours of the amniocentesis. Histopathologic chorioamnionitis was seen in 53 patients (60.2%). The findings (with their sensitivity, specificity, and positive and negative predictive values) were: polymorphonuclear leukocytes at > 10/high-power field (22.6%, 97.2%, 92.3%, and 46.1%), positive Gram stain (26.4%, 94.6%, 87.5%, and 47.3%), culture (28.3%, 92.1%, 83.3%, and 47.9%), and glucose of < 15 mg/dl (28.3%, 94.6%, 88.2%, and 47.9%), respectively. Using a receiver-operator characteristic curve for different level of AF glucose, a glucose level of < 20 mg/dl was the most sensitive AF predictor of histologic chorioamnionitis. CONCLUSION: Histopathologic evidence of chorioamnionitis was present in 60.2% of cases of preterm births due to preterm labor in women who at our institution were offered and accepted amniocentesis and subsequently delivered within 48 hours. AFMs may be useful predictors of histologic chorioamnionitis. The most efficient AFM for chorioamnionitis in this group of patients was glucose at < 20 mg/dl.

Adult↗

Multiple promoter elements including a novel repressor site modulate expression of the chick ovalbumin gene.

As is the case with many eukaryotic genes, regulation of the chick ovalbumin (Ov) gene involves both positive and negative modulation. Recent studies indicate that positive regulation by steroids entails binding of several proteins to a hormone-response unit called the steroid-dependent regulatory element (SDRE; -892 to -780). In addition, gene activity is suppressed by factor(s) acting through the negative regulatory element (NRE; -308 to -88). Previous data suggested that the NRE is composed of multiple, independently acting negative elements. The goal of the present studies was to define more precisely the locations of these negative elements and to investigate their functional interactions. Transfection analyses of linker scanning mutants revealed a strong repressor site, designated the COUP-adjacent repressor (CAR) site, located between -119 and -111. Gel mobility shift analyses with the CAR element suggested that it may play a role in the developmental regulation of the Ov gene. A weaker repressor element was also identified at about -275. Surprisingly, two positive sites were found, one of which is the binding site for the estrogen-responsive transcription factor delta-EF1. These results demonstrate that the Ov NRE contains not only sites responsible for the repression of the gene but also a positive element that is required for responsiveness to steroid hormones.

Animals↗

Identification of the novel player deltaEF1 in estrogen transcriptional cascades.

Although many genes are regulated by estrogen, very few have been shown to directly bind the estrogen receptor complex. Therefore, transcriptional cascades probably occur in which the estrogen receptor directly binds to a target gene that encodes another transcription factor that subsequently regulates additional genes. Through the use of a differential display assay, a transcription factor has been identified that may be involved in estrogen transcriptional cascades. This report demonstrates that transcription factor deltaEF1 is induced eightfold by estrogen in the chick oviduct. Furthermore, the regulation by estrogen occurs at the transcriptional level and is likely to be a direct effect of the estrogen receptor complex, as it does not require concomitant protein synthesis. A putative binding site was identified in the 5'-flanking region of the chick ovalbumin gene identifying it as a possible target gene for regulation by deltaEF1. Characterization of this binding site revealed that deltaEF1 binds to and regulates the chick ovalbumin gene. Thus, a novel regulatory cascade that is triggered by estrogen has been defined.

Animals↗

Selective cytotoxicity of topoisomerase-directed protoberberines against glioblastoma cells.

Protoberberines are a new class of organic cations that are dual poisons of topoisomerases I and II. Certain protoberberines exhibit greater in vitro cytotoxicity against cell lines derived from solid tumors than from leukemias. Using a group of seventeen different protoberberine analogs, the structural basis for selective cytotoxicity toward sensitive SF-268 glioblastoma cells as compared with resistant RPMI 8402 lymphoblast cells was explored. The selective cytotoxicity is associated with the presence of an imminium ion and other structural features of protoberberines, and is not shared by drugs such as camptothecin, doxorubicin, vinblastine, and etoposide, which are either equally or more cytotoxic against RPMI 8402 cells than SF-268 cells. The selective cytotoxicity of protoberberines against SF-268 over RPMI 8402 cells is not due to differences in topoisomerase levels or known drug efflux systems such as multidrug resistance (MDR1) and multidrug-resistance protein (MRP). Comparative in vitro studies of the accumulation of coralyne, a fluorescent protoberberine, into sensitive and resistant cells demonstrated a correlation between drug accumulation and selective cytotoxicity. Inhibitors of coralyne uptake included several protoberberine-related compounds. Of these, palmatine, a minimally cytotoxic protoberberine, both inhibited coralyne accumulation and reduced cytotoxicity against SF-268 cells, but not against RPMI 8402 cells. Despite the structural resemblance of protoberberines to catecholamines, our experiments using inhibitors and cells expressing biogenic amine uptake systems have ruled out the involvement of biogenic amine uptake1, uptake2, and vesicular monoamine transport systems. Uptake systems remaining as candidates, supported by preliminary data, include transport via vesicles derived from specialized membrane invaginations and selected carrier-mediated organic amine transport systems.

Antineoplastic Agents↗

Angiogenesis in normal tissue adjacent to colon cancer.

BACKGROUND AND OBJECTIVES: Angiogenesis in malignant neoplasms, as measured by microvessel density, has been shown to correlate with survival or stage in some studies of breast, gastric, and colorectal cancer. We hypothesized that aggressive cancers promote angiogenesis in normal tissue adjacent to the invading neoplasm. METHODS: To test this hypothesis, 36 specimens of colon adenocarcinoma curatively resected between 1986 and 1990 were sectioned and stained for factor VIII-related antigen, vascular endothelial growth factor (VEGF), and interleukin-8 (IL-8). Microvessel density was measured within the colon cancer and in adjacent, histologically normal tissue. Clinical/pathological variables were examined using multivariate analysis and Student t-test. RESULTS: Microvessel density was higher in the neoplasms (26.0+/-1.66/ 0.25 mm2) than in the surrounding normal tissue (22.3+/-1.88/0.25 mm2) (P=0.03). The difference was primarily due to smaller neoplasms (T1 and T2) which had vessel counts of 10.6+/-0.74/0.25 mm2 in the adjacent normal tissue compared to vessel counts of 18.9+/-3.02/0.25 mm2 within these tumors (P=0.02). T3 and T4 neoplasms had equivalent amounts of angiogenesis within the lesion (26.9+/-1.81/0.25 mm2) and in the histologically normal margin (24.2+/-1.98/0.25 mm2) (P=0.12). VEGF was present in the tumor microenvironment in 100% and IL-8 in 45% of specimens stained for these angiogenic cytokines. Microvessel density did not correlate with 5-year survival. CONCLUSIONS: Our data suggest that colon cancers that invade through the muscularis propria may have a greater ability to induce angiogenesis in adjacent normal tissue.

Adenocarcinoma↗

A winged-helix family member is involved in a steroid hormone-triggered regulatory circuit.

A common theme emerging in eukaryotic gene regulation is that maximal gene induction requires several transcription factors acting in concert to regulate the activation of critical genes. Increasingly, nuclear receptors play key roles in orchestrating this regulation, often by integrating additional signaling pathways, through complex regulatory elements known as hormone response units. The ovalbumin gene contains one such unit, known as the steroid-dependent regulatory element. The binding of the chicken ovalbumin induced regulatory protein-I (Chirp-I) to this element occurs only in response to treatment with estrogen and glucocorticoid. Evidence presented herein demonstrates that Chirp-I has many features in common with the winged-helix (W-H) family of transcription factors. The binding sites for Chirp-I and for the W-H proteins have similar sequence recognition requirements. Northern blots establish that members of the W-H family are expressed in oviduct. Most convincing, the Chirp-I complex interacts with two different antibodies specific to W-H family members. The culmination of this work supports the hypothesis that Chirp-I is a member of the W-H family, and it lends credence to the idea that W-H proteins are essential components of some steroid hormone regulatory circuits.

Animals↗

Cloning and characterization of the Aspergillus nidulans DNA topoisomerase I gene.

The topoisomerase I (TOP1) gene was cloned and sequenced from Aspergillus nidulans using the polymerase chain reaction (PCR). Genomic DNA was used as a template to obtain a 2987-bp gene containing five small introns. PCR from a cDNA library yielded a 2613-bp sequence which codes for an 871 amino acid protein. Comparison of the deduced amino acid sequence with other DNA topoisomerase I (topo I) protein sequences shows a somewhat higher degree of identity with other fungal amino acid sequences than with the human enzyme. Topo I is a ubiquitous enzyme which can be converted to a cytotoxic molecule in the presence of drugs that function as topo I poisons. The Aspergillus TOP1 cDNA will be used in an effort to identify novel cytotoxic antifungals which target this enzyme.

Amino Acid Sequence↗

Differential poisoning of human and Aspergillus nidulans DNA topoisomerase I by bi- and terbenzimidazoles.

DNA topoisomerase I has been partially purified from Aspergillus nidulans. The purified enzyme is most likely the major nuclear DNA topoisomerase I on the basis of the following findings. (1) Purified DNA topoisomerase I can relax both positively and negatively supercoiled DNA. (2) Neither an energy cofactor nor Mg(II) is required for the relaxation or the cleavage reaction of the enzyme. On the basis of a phosphate-transfer experiment, the Aspergillus topoisomerase I was shown to have a molecular mass (Mr) of 105 kDa. The differential sensitivity of the human and Aspergillus topoisomerase I was compared using a number of known human DNA topoisomerase I poisons. Like human DNA topoisomerase I, Aspergillus topoisomerase I is highly sensitive to the poisoning activity of camptothecin and a number of bi- and terbenzimidazoles. However, unlike human topoisomerase I, Aspergillus topoisomerase I is completely resistant to monobenzimidazoles, protoberberines (e.g. coralyne), and nitidine. Cytotoxicity studies using yeast expressing human and yeast topoisomerase I cDNAs have also demonstrated a similar differential sensitivity of yeast topoisomerase I to these human topoisomerase I poisons. These results together suggest that the nuclear fungal topoisomerase I may be sufficiently different from its human counterpart to serve as a molecular target for the development of antifungal drugs.

Antifungal Agents↗

Induction of DNA topoisomerase II-mediated DNA cleavage by beta-lapachone and related naphthoquinones.

Recent studies have suggested that 3,4-dihydro-2,2-dimethyl-2H-naphtho[1,2-b]pyran-5,6-dione (beta-lapachone) inhibits DNA topoisomerase I by a mechanism distinct from that of camptothecin. To study the mechanism of action of beta-lapachone, a series of beta-lapachone and related naphthoquinones were synthesized, and their activity against drug-sensitive and -resistant cell lines and purified human DNA topoisomerases as evaluated. Consistent with the previous report, beta-lapachone does not induce topoisomerase I-mediated DNA breaks. However, beta-lapachone and related naphthoquinones, like menadione, induce protein-linked DNA breaks in the presence of purified human DNA topoisomerase IIalpha. Poisoning of topoisomerase IIalpha by beta-lapachone and related naphthoquinones is independent of ATP and involves the formation of reversible cleavable complexes. The structural similarity between menadione, a para-quinone, and beta-lapachone, an ortho-quinone, together with their similar activity in poisoning topoisomerase IIalpha, suggests a common mechanism of action involving chemical reactivity of these quinones. Indeed, both quinones form adducts with mercaptoethanol, and beta-lapachone is 10-fold more reactive. There is an apparent correlation between the rates of the adduct formation with thiols and of the topoisomerase II-poisoning activity of the aforementioned quinones. In preliminary studies, beta-lapachone and related naphthoquinones are found to be cytotoxic against a panel of drug-sensitive and drug-resistant tumor cell lines, including MDR1-overexpressing cell lines, camptothecin-resistant cell lines, and the atypical multidrug-resistant CEM/V-1 cell line.

Antineoplastic Agents, Alkylating↗

Cytotoxic, allergic and genotoxic activity of a nickel-titanium alloy.

The nearly equiatomic nickel-titanium (NiTi) alloy is known for its shape memory properties. These properties can be put to excellent use in various biomedical applications, such as wires for orthodontic tooth alignment and osteosynthesis staples. The aim of this study was to evaluate the short-term biological safety of the NiTi alloy. We carried out an end-point dilution minimal essential medium (MEM) extract cytotoxicity test, a guinea-pig sensitization test and two genotoxicity tests: the Salmonella reverse mutation test and the chromosomal aberration test. The NiTi alloy showed no cytotoxic, allergic or genotoxic activity, similar to the clinical reference control material AISI 316 LVM stainless steel. This promising biological behaviour was most likely due to a minimal release of ions and in that way a reflection of the good corrosion resistance of the NiTi alloy. Given these very good results, together with the good tissue compatibility as shown in several implantation studies in the literature, the NiTi alloy can be regarded as a biologically safe implant material with many promising clinical applications.

Alloys↗