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J Leavitt

Publications and source records attributed to J Leavitt.

At least 19 recordsLinked to original sources

The use of the L-plastin promoter for adenoviral-mediated, tumor-specific gene expression in ovarian and bladder cancer cell lines.

A 2.4-kb truncated L-plastin promoter was inserted either 5' to the LacZ gene (Ad-Lp-LacZ) or 5' to the cytosine deaminase (CD) gene (Ad-Lp-CD) in a replication-incompetent adenoviral vector backbone. Infectivity and cytotoxicity experiments with the LacZ and CD vectors suggested that the L-plastin promoter-driven transcriptional units were expressed at much higher levels in explants of ovarian cancer cells from patients and in established ovarian or bladder cancer cell lines than they were in normal peritoneal mesothelial cells from surgical specimens, in organ cultures of normal ovarian cells, or in the established CCD minimal deviation fibroblast cell line. Control experiments showed that this difference was not attributable to the lack of infectivity of the normal peritoneal cells, the normal ovarian cells, or the minimal deviation CCD fibroblast cell line, because these cells showed expression of the LacZ reporter gene when exposed to the replication-incompetent adenoviral vector carrying the cytomegalovirus (CMV)-driven LacZ gene (Ad-CMV-LacZ). The Ovcar-5 and Skov-3 ovarian cancer cell lines exposed to the Ad-Lp-CD adenoviral vector were much more sensitive to the prodrug 5-fluorocytosine (5FC), which is converted from the 5FC prodrug into the toxic chemical 5-fluorouracil, than was the CCD minimal deviation fibroblast cell line after exposure to the same vector. A mouse xenograft model was used to show that the Ad-Lp-CD vector/5FC system could prevent engraftment of ovarian cancer cells in nude mice. Finally, injection of the Ad-Lp-CD vector into s.c. tumor nodules generated a greater reduction of the size of the tumor nodules than did injection of the Ad-CMV-LacZ vectors into tumor nodules. The Ad-Lp-CD vectors were as suppressive to tumor growth as the Ad-CMV-CD vectors. These results suggest that an adenoviral vector carrying the CD gene controlled by the L-plastin promoter (Ad-Lp-CD) may be of potential value for the i.p. therapy of ovarian cancer.

Adenoviridae↗

Inadequacies of self-report data for exclusion criteria detection in marihuana research: an empirical case for multi-method direct examination screening.

Stringent exclusion criteria in drug abuse research are necessary to protect against methodological confounds compromising the interpretation of findings. However, reliance on self-report screening may fail to detect important exclusion variables. We compared three levels of exclusion criteria screening in a study of neurophysiological/neurocognitive sequelae of chronic marihuana use in normals. LEVEL 1 (self-report) consisted of telephone pre-screening. LEVEL 2 (also self-report) involved in-depth personal interviews. LEVEL 3 consisted of several direct examination assessments including a medical/psychiatric examination by a board certified psychiatrist, eight weeks of twice per week urine drug screens, an EEG exam and eight hours of neuropsychological testing. Results indicated that 39.0% of subjects passing self-report screening had significant exclusion criteria findings that were only detected through LEVEL 3 direct examination procedures. Of all subjects found to have exclusion criteria after being provisionally accepted following LEVEL 1 telephone pre-screening, 55.7% were detected only through more rigorous LEVEL 3 direct examination screening methods.

Adolescent↗

Topographic quantitative EEG sequelae of chronic marihuana use: a replication using medically and psychiatrically screened normal subjects.

In two previous studies it was reported that chronic marihuana (THC) use was associated with unique quantitative EEG features which were present in the non-intoxicated state. THC users, as contrasted with controls, had significant elevations of Absolute Power, Relative Power, and Coherence of alpha activity over the bilateral frontal cortex. Furthermore, a quantitative EEG discriminant function analyses permitted a 95% correct user versus non-user classification. However, because all of the THC users and 58% of the non-user controls were psychiatric inpatients, diagnostic and medication effects, if any, were uncontrolled. In the present study the same quantitative EEG methods were used to study daily THC users and non-user controls who underwent a rigorous screening process to insure that they were medically and psychiatrically healthy. The results of previous studies were replicated and an additional EEG correlate of chronic THC exposure (reduced alpha frequency) was identified.

Adolescent↗

Reduced P50 auditory gating response in psychiatrically normal chronic marihuana users: a pilot study.

BACKGROUND: Neurophysiological studies of marihuana (THC) often contain uncontrolled confounds [psychiatric diagnoses, polydrug use, central nervous system (CNS)-relevant injury, etc.] that can alter electrophysiological measures. This P50 sensory gating report is part of a larger neurophysiological and neurocognitive investigation of chronic THC exposure using rigorously screened medically and psychiatrically normal individuals without concurrent use of non-THC substances. METHODS: Following medical and psychiatric screening, including serial urine drug screens, technically adequate P50 paired auditory recovery tests were obtained on 19 chronic THC users and 14 control subjects. Fifty pairs of 80-dB auditory clicks (1 pair per 10 sec, 500-msec interclick separation) were delivered through earphones. The sensory gating measure was the ratio between the P50 amplitudes at the vertex elicited by the conditioning (first) and test (second) click. RESULTS: THC subjects had significantly higher sensory gating ratios (i.e., reduced suppression) than did control subjects. Among THC users, sensory gating ratios did not correlate with duration or frequency of THC use, although subjects with ratios above 40 had nearly twice the number of "joint-years" of THC exposure than did those with lower ratios. CONCLUSIONS: Reduced P50 suppression in the sensory gating paradigm may be a possible neurophysiological CNS sequela of long-term cumulative exposure to THC.

Acoustic Stimulation↗

Emergency department use of aspirin in patients with possible acute myocardial infarction.

BACKGROUND: Efforts have been made to improve the suboptimal use of aspirin after hospitalization. OBJECTIVE: To assess the frequency and timing of aspirin administration in emergency department patients with possible myocardial infarction. DESIGN: Retrospective record review. SETTING: Emergency departments of four hospitals affiliated with the same university. PATIENTS: All patients who were admitted to the four hospitals in 1994 for evaluation and treatment of suspected acute myocardial infarction. MEASUREMENTS: The frequency and timing of aspirin administration and the definitive diagnosis established before discharge from the hospital. RESULTS: Aspirin was not given to 253 of 463 emergency department patients (55%) who had a definitive diagnosis of acute myocardial infarction. Seventy-eight percent of patients who did receive aspirin received it more than 30 minutes after arrival in the emergency department. CONCLUSION: Aspirin therapy is underutilized as the first intervention in patients who are admitted with suspected myocardial infarction.

Aged↗

Mutagenic activity of high-energy 532 nm ultra-short laser pulses.

The mutagenic activity of green (532 nm) and infrared (1064 nm) ultra-short laser light pulses was tested in cultured Syrian hamster fibroblasts by a hypoxanthine phosphoribosyl-transferase (HPRT) mutagenesis assay. In 18 irradiation trials, cells were exposed to eight consecutive 100-ps pulses of either 532 nm or 1064 nm light from a Nd:YAG laser at average irradiances of 3.0 GW/cm2. The 532 nm irradiations produced Hprt mutations at an average observed frequency of 5.3-5.6 x 10(-6), 10-fold higher than control trials (P < 0.01), while 1064 nm irradiations produced only background (spontaneous mutation) frequencies. A HAT (hypoxanthine, aminopterin, thymidine) sensitivity test allowed us to infer that Hprt- clones, selected as 6-thioguanine-resistant clones, possessed mutations at the Hprt locus after 532 nm Nd:YAG laser irradiation. The mutagenic effects of 532 nm high-energy laser pulses and not 1064 nm wavelengths are discussed in light of a two-photon absorption hypothesis. These preliminary findings suggest that 460-590 nm visible-light lasers may be mutagenic to mammalian cells either as a result of two-photon absorption or through some other photochemical process that damages DNA.

Animals↗

Isoform-specific complementation of the yeast sac6 null mutation by human fimbrin.

The actin cytoskeleton is a fundamental component of eukaryotic cells, with both structural and motile roles. Actin and many of the actin-binding proteins found in different cell types are highly conserved, showing considerable similarity in both primary structure and biochemical properties. To make detailed comparisons between homologous proteins, it is necessary to know whether the various proteins are functionally, as well as structurally, conserved. Fimbrin is an example of a cytoskeletal component that, as shown by sequence determinations and biochemical characterizations, is conserved between organisms as diverse as Saccharomyces cerevisiae and humans. In this study, we examined whether the human homolog can substitute for the yeast protein in vivo. We report here that two isoforms of human fimbrin, also referred to as T- and L-plastin, can both substitute in vivo for yeast fimbrin, also known as Sac6p, whereas a third isoform, I-fimbrin (or I-plastin), cannot. We demonstrate that the human T- and L-fimbrins, in addition to complementing the temperature-sensitive growth defect of the sac6 null mutant, restore both normal cytoskeletal organization and cell shape to the mutant cells. In addition, we show that human T- and L-fimbrins can complement a sporulation defect caused by the sac6 null mutation. These findings indicate that there is a high degree of functional conservation in the cytoskeleton, even between organisms as diverse as S. cerevisiae and humans.

Animals↗

Regulation of synthesis of the transformation-induced protein, leukocyte plastin, by ovarian steroid hormones.

Previous studies indicated that, among normal cells, only those of hemopoietic lineages expressed the abundant leukocyte phosphoprotein, L-plastin, and that activation of the L-plastin gene frequently occurred in malignant cells of solid tumors. We discovered that the gene encoding L-plastin contains potential estrogen and progesterone response elements upstream from its promoter, suggesting that L-plastin expression is subject to ovarian steroid regulation. To determine if L-plastin synthesis is regulated by ovarian steroids (estrogens and progestins), we examined cultured uterine endometrial stromal cells (SC) which are known to be responsive to ovarian steroids in a fashion that approximates the normal endometrium. Primary SC, which synthesized estrogen receptor and progesterone receptor mRNA transcripts, dramatically elevated L-plastin transcript synthesis in response to treatment with estradiol (E2) and medroxyprogesterone acetate (MPA). Stimulation of L-plastin synthesis by E2 and MPA was also evident by examination of protein synthesis using high-resolution two-dimensional gel electrophoresis and Western blotting. By contrast, SC that were propagated through multiple culture passages exhibited a coordinate decline in L-plastin, estrogen receptor, and progesterone receptor transcript levels and L-plastin protein synthesis. No other intracellular proteins could be found that were modulated significantly by E2 and MPA, but secretory protein synthesis was profoundly affected by E2 and MPA. Like L-plastin synthesis, hormone-mediated secretory protein synthesis was lost after propagation of the SC culture and reduction of estrogen receptor and progesterone receptor transcript synthesis. Our findings suggest that L-plastin synthesis is regulated coordinately with secretory protein synthesis in endometrial SC by estrogens and progestins.

Cells, Cultured↗

Activation of the leukocyte plastin gene occurs in most human cancer cells.

Examination of human neoplastic cell lines using reverse transcription-polymerase chain reaction (RT-PCR), Northern blotting, and protein profiling revealed that > 90% of transformed human cell lines surveyed exhibited widely varying degrees of activation of the leukocyte (L)-plastin gene. By contrast, diploid cell types exhibited no evidence of event transient activation of this gene. The low level activation of the L-plastin gene, detectable only by RT-PCR, was confirmed by using the recombinant human L-plastin promoter to select "L-plastin positive" clonal subpopulations from these RT-PCR-positive cell lines. A stable cell line selected by this method exhibited low level constitutive synthesis of L-plastin mRNA and polypeptide. This cell line also exhibited the coinduction of at least three highly abundant new cytoplasmic proteins (M(r) 42,000, 37,000, and 34,000) and reduction in growth rate and saturation density. Most clonal cell lines derived by this selection procedure that activated the L-plastin gene exhibited a crisis stage that led to death of the clonal strain, a phenomenon that could be reproduced by induction of synthesis of recombinant L-plastin from its complementary DNA.

Base Sequence↗

Human plastin genes. Comparative gene structure, chromosome location, and differential expression in normal and neoplastic cells.

Plastins are a family of actin-binding proteins that are conserved throughout eukaryote evolution and expressed in most tissues of higher eukaryotes. In humans, two ubiquitous plastin isoforms (L and T) have been identified. The L isoform is expressed only in hemopoietic cell lineages, while the T isoform has been found in all other normal cells of solid tissues that have replicative potential (fibroblasts, endothelial cells, epithelial cells, melanocytes, etc.). However, L-plastin has been found in many types of malignant human cells of non-hemopoietic origin suggesting that its expression is induced accompanying tumorigenesis in solid tissues. To learn more about the nature of plastin genes and their potential role in malignancy, the L- and T- plastin genes were cloned and sequenced to characterize their structure and mechanisms of regulation of expression. Each gene was found to be approximately 90 kilobases in size and was composed of 16 exons. All exon-intron junction sequences were identified and shown to conform to the canonical junction sequences. It was evident from their similar structure and coding homology that the two plastin genes have diverged from a common ancestor gene. L- and T-plastin genes were also mapped to chromosomes 13 and X, respectively, using polymerase chain reaction amplification with isoform-specific probes. An expanded survey of normal cell types and 50 tumor cell lines, demonstrated that 68% of carcinomas and 53% of other solid tumors of nonepithelial origin exhibited L-plastin expression, whereas the normal stem cell progenitors did not. Fibrosarcomas (n = 4), ovarian carcinomas (n = 9), breast carcinomas (n = 4), and choriocarcinomas (n = 2) combined exhibited the highest frequency and levels of L-plastin expression (95% frequency). In addition, 4 tumor cell lines that were L-plastin-negative exhibited evidence of defective T-plastin expression increasing the apparent co-incidence of plastin abnormalities associated with human tumorigenesis to 71%. Evidence is presented in support of a trans-activation mechanism for activation of L-plastin synthesis accompanying tumorigenesis. The induction of L-plastin expression accompanying SV40-mediated transformation of human embryonic lung MRC-5 fibroblasts was also confirmed. Finally, we present evidence that fimbrin is a third distinct plastin isoform which is specifically expressed at high levels in the small intestine.

Amino Acid Sequence↗

Characterization of the human L-plastin gene promoter in normal and neoplastic cells.

Plastins are a family of human actin-binding proteins (isoforms) which are abundantly expressed in all normal replicating mammalian cells. One isoform, L-plastin, is constitutively expressed at high levels in hemopoietic cell types while T-plastin is constitutively expressed in all non-hemopoietic cells of solid tissues that have replicative potential (fibroblasts, endothelial cells, epithelial cells, melanocytes, etc.). L-plastin is, however, constitutively synthesized in many types of malignant human cells of solid tissues suggesting that its expression is induced during tumorigenesis. The frequency of L-plastin induction in some cancers of the steroid-regulated female reproductive tract (breast, ovary, uterus, and placenta) appears to be especially high (79% in a limited survey). To learn the mechanism of L-plastin gene activation accompanying tumorigenesis, we have begun to characterize the promoter and regulatory elements of the L-plastin gene. Transcription initiation from this promoter was found to occur at multiple sites and as near as 10 base pairs from the 3'-side of the TATAAA box. The promoter and its flanking DNA were cloned and sequenced to identify potential regulatory elements that participate in the induction of the L-plastin gene in neoplastic cells. Examination of upstream sequences revealed the existence of two potential progesterone, one potential estrogen, and four potential Ets-1 responsive elements flanking the promoter. A 315-base pair fragment spanning the TATAAA box and a potential Sp1-binding site exhibited maximum promoter activity using CAT as a reporter while longer promoter fragments extending into upstream flanking sequences spanning the hormone receptor-response elements exhibited reduced promoter activity. An expression vector, pHLPPr-1-neo, was constructed using a 5.1-kilobase pair EcoRI-HindIII fragment of the L-plastin gene that contained the potential upstream regulatory elements, the TATAAA box, and part of the first exon. This promoter could direct the constitutive expression of the reporter beta-galactosidase at high frequency in transfected colonies of transformed cells that express L-plastin constitutively; by contrast, this promoter was virtually inactive in transfected colonies of normal fibroblasts and it exhibited a low frequency of constitutive activation in transfected colonies of in vitro SV40-transformed fibroblasts which did not exhibit L-plastin expression. The utility of this recombinant promoter in determining the mechanism(s) that leads to activation of the L-plastin gene in tumor cells is discussed. The potential significance of regulation of the L-plastin gene by reproductive hormones in cancers arising in hormone-responsive tissues is also discussed.

Base Sequence↗

Sequence analysis of proteins separated by polyacrylamide gel electrophoresis: towards an integrated protein database.

Improved technologies or the synergistic use of complementary methods enhance the efficiency of research and permit the exploration of new approaches for the investigation of complex problems. High sensitivity protein sequence analysis and polyacrylamide gel electrophoresis are such complementary methods. Here we summarize the current status of high sensitivity sequence analysis of proteins separated in polyacrylamide gels and discuss strategies by which this technology can enhance biological research by generating new approaches for the solution of complex, multifacetted problems. Finally, we outline imminent technological advances in the area of high sensitivity protein sequence analysis and argue that further technological developments will ultimately lead to the generation of an integrated protein database (containing structural and functional as well as physiological information in an easily accessible form) of all the proteins separated by high resolution two-dimensional gel electrophoresis.

Amino Acid Sequence↗

Fimbrin is a homologue of the cytoplasmic phosphoprotein plastin and has domains homologous with calmodulin and actin gelation proteins.

Fimbrin is an actin-bundling protein found in intestinal microvilli, hair cell stereocilia, and fibroblast filopodia. The complete protein sequence (630 residues) of chicken intestine fimbrin has been determined from two full-length cDNA clones. The sequence encodes a small amino-terminal domain (115 residues) that is homologous with two calcium-binding sites of calmodulin and a large carboxy-terminal domain (500 residues) consisting of a fourfold-repeated 125-residue sequence. This repeat is homologous with the actin-binding domain of alpha-actinin and the amino-terminal domains of dystrophin, actin-gelation protein, and beta-spectrin. The presence of this duplicated domain in fimbrin links actin bundling proteins and gelation proteins into a common family of actin cross-linking proteins. Fimbrin is also homologous in sequence with human L-plastin and T-plastin. L-plastin is found in only normal or transformed leukocytes where it becomes phosphorylated in response to IL 1 or phorbol myristate acetate. T-plastin is found in cells of solid tissues where it does not become phosphorylated. Neoplastic cells derived from solid tissues express both isoforms. The differences in expression, sequence, and phosphorylation suggest possible functional differences between fimbrin isoforms.

Actins↗

Correction of the N-terminal sequences of the human plastin isoforms by using anchored polymerase chain reaction: identification of a potential calcium-binding domain.

Plastins are a family of at least three cytoplasmic protein isoforms that are expressed differentially between cells of the hematopoietic lineages and cells of solid tissues. Expression of the L-plastin isoform appears to be restricted to replicating blood cells, and the two T-plastin isoforms appear to be restricted to replicating cells of solid tissues. However, L-plastin is induced in many human solid tumor-derived cells. We used the anchored polymerase chain reaction technique to amplify and clone the missing 5' ends of plastin mRNAs. We found that both plastin isoforms contain a potential calcium binding site near the N terminus.

Amino Acid Sequence↗

Regulation of the human beta-actin promoter by upstream and intron domains.

We have identified three regulatory domains of the complex human beta-actin gene promoter. They span a region of about 3000 bases, from not more than -2011 bases upstream of the mRNA cap site to within the 5' intron (832 bases long). A distal upstream domain contains at least one enhancer-like element. A proximal upstream domain, with a CArG [for CC(A + T rich)6GG] motif found in all known mammalian actin genes, seems to confer serum, but not growth factor, inducibility. The third domain is within the evolutionarily conserved 3' region of the first intron and contains a 13 base-pair sequence, identical to the upstream sequence with the CArG motif. This domain also contains sequences that are both serum and fibroblast growth factor inducible.

Actins↗

Homozygote for Huntington disease.

Four offspring of three different Huntington disease (HD) affected x affected matings were assessed by genetic linkage analysis for possible homozygosity. One individual was found to have a 95% likelihood of being an HD homozygote. The homozygote individual had an age at onset and symptoms which were similar to those of affected HD heterozygote relatives, including some with younger onset. This confirms the observation of Wexler et al. that in HD the homozygote is not more severely afflicted than the heterozygote.

Adult↗

Mapping of D4S98/S114/S113 confines the Huntington's defect to a reduced physical region at the telomere of chromosome 4.

The dominant gene defect in Huntington's disease (HD) is linked to the DNA marker D4S10, near the telomere of the chromosome 4 short arm. Two other markers, D4S43 and D4S95, are closer, but still proximal to the HD gene in 4p16.3. We have characterized a new locus, D4S114, identified by cloning the end of a NotI fragment resolved by pulsed-field gel electrophoresis. D4S114 was localized distal to D4S43 and D4S95 by both physical and genetic mapping techniques. The "end"-clone overlaps a previously isolated NotI "linking" clone, and is within 150 kb of a second "linking" clone defining D4S113. Restriction fragment length polymorphisms for D4S113 and D4S114, one of which is identical to a SacI polymorphism detected by the anonymous probe pBS731B-C (D4S98), were typed for key crossovers in HD and reference pedigrees. The data support the locus order D4S10-(D4S43, D4S95)-D4S98/S114/S113-HD-telomere. The D4S98/S114/S113 cluster therefore represents the nearest cloned sequences to HD, and provides a valuable new point for launching directional cloning strategies to isolate and characterize this disease gene.

Animals↗