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Biomedical subjects

J Ko

Publications and source records attributed to J Ko.

At least 37 records · Page 2Linked to original sources

Induction of early growth response-1 gene expression by calmodulin antagonist trifluoperazine through the activation of Elk-1 in human fibrosarcoma HT1080 cells.

The early growth response gene-1 (Egr-1) is a transcription factor that plays an important role in cell growth and differentiation. It has been known that Egr-1 expression is down-regulated in many types of tumor tissues, including human fibrosarcoma HT1080 cells, and introduction of the Egr-1 gene into HT1080 cells inhibits cell growth and tumorigenic potential. Trifluoperazine (TFP), a phenothiazine class calmodulin antagonist, is known to inhibit DNA synthesis and cell proliferation and potentially important in antitumor activities. To understand the regulatory mechanism of Egr-1, we investigated the effect of TFP on expression of Egr-1 in HT1080 cells. Herein, we report that Egr-1 expression was increased by TFP in synergy with serum at the transcriptional level. Both the Ca(2+)/calmodulin-dependent protein kinase II inhibitor KN62 and the calcineurin inhibitor cyclosporin A enhanced TFP-dependent increase of Egr-1, suggesting that the Ca(2+)/calmodulindependent pathway plays a role in regulation of Egr-1 expression in HT1080 cells. The TFP-stimulated increase of the Egr-1 protein was preferentially inhibited by the MEK-specific inhibitor PD98059. In addition, activation of human Egr-1 promoter and the transcriptional activation of the ternary complex factor Elk-1 induced by TFP were inhibited both by pretreatment of PD98059 and by expression of the dominant-negative RasN17. These results indicate that the Ras/MEK/Erk/Elk-1 pathway is necessary for TFP-induced Egr-1 expression. We propose that the calmodulin antagonist TFP stimulates Egr-1 gene expression by modulating Ras/MEK/Erk and activation of the Elk-1 pathway in human fibrosarcoma HT1080 cells.

Calmodulin↗

Residual virulence of Brucella abortus in the absence of the cytochrome bc(1)complex in a murine model in vitro and in vivo.

To maintain survival in macrophages, Brucella must overcome a hostile phagosomal environment defined as low pH, limited nutrition and low oxygen tension. The specific mechanisms utilized by Brucella to surmount such unfavorable environmental factors in phagosomes are not well understood. In general, to adapt to a change in environmental oxygen tension, bacteria use different terminal oxidases that have different oxygen affinity. To survive in phagosomes where low oxygen tension exists, Brucella, like other bacteria, may require high oxygen affinity terminal oxidases that can accept electrons through a cytochrome bc(1)complex dependent or independent pathway. Using a Brucella abortus cytochrome bc(1)complex deficient mutant, delta fbcF, the requirement for a high oxygen affinity terminal oxidase governed by the cytochrome bc(1)complex dependent pathway was tested. The number of cfu from RAW 264.7 macrophage cells and spleens of BALB/c mice infected with wild-type or the cytochrome bc(1)complex deficient mutant was similar during the course of infection. These results suggest that B. abortus contains no essential terminal oxidase utilized at low oxygen tension in phagosomes requiring the cytochrome bc(1)complex. Alternatively, other branched cytochrome bc(1)complex independent respiratory mechanisms that contain the high oxygen affinity terminal oxidases likely exist to facilitate Brucella survival in phagosomes. This is the first investigation regarding the Brucella respiratory system at the molecular level and the involvement of a respiratory system in Brucella pathogenesis.

Amino Acid Sequence↗

Brucella abortus tandem repeated ATP-binding proteins, BapA and BapB, homologs of haemophilus influenzae LktB, are not necessary for intracellular survival.

Brucella abortus actively secretes materials and uptakes nutrients to maintain the survival and multiplication of the bacteria in host cells. ATP-binding cassette (ABC) transporters can uptake or secrete diverse materials across the bacterial membrane, and thus, ABC transporters may be important for survival of the pathogen in the host. In the present study, the B. abortus genes encoding tandem repeated Brucella ATP-binding proteins, BapA and BapB, were identified. The deduced amino acid sequences of these two genes place BapA and BapB into group 6 containing RTX toxin transporters and cyclic beta-1,2-glucan transporters, one of 25 ABC transporter ortholog groups. One of the ortholog group 6 proteins, Haemophilus influenzae LktB, shows the highest similarity and identity with these two Brucella proteins. To test the role of these putative tandem repeated ABC transporters in Brucella pathogenesis, a bap deletion mutant was constructed and used to infect murine RAW 264.7 macrophages and mice. The number of cfu from RAW 264.7 cells and spleens of BALB/c mice infected with wild type or the bap deletion mutant was similar during the course of infection, suggesting the bap genes are not necessary to maintain the pathogenesis of B. abortus, or alternative compensatory mechanisms may exist to permit the intracellular survival of B. abortus in vitro and in vivo. This is the first molecular approach to investigate the role of putative ABC transporters classified into ortholog group 6 in Brucella pathogenesis.

ATP-Binding Cassette Transporters↗

NUDEL is a novel Cdk5 substrate that associates with LIS1 and cytoplasmic dynein.

Disruption of one allele of the LIS1 gene causes a severe developmental brain abnormality, type I lissencephaly. In Aspergillus nidulans, the LIS1 homolog, NUDF, and cytoplasmic dynein are genetically linked and regulate nuclear movements during hyphal growth. Recently, we demonstrated that mammalian LIS1 regulates dynein functions. Here we characterize NUDEL, a novel LIS1-interacting protein with sequence homology to gene products also implicated in nuclear distribution in fungi. Like LIS1, NUDEL is robustly expressed in brain, enriched at centrosomes and neuronal growth cones, and interacts with cytoplasmic dynein. Furthermore, NUDEL is a substrate of Cdk5, a kinase known to be critical during neuronal migration. Inhibition of Cdk5 modifies NUDEL distribution in neurons and affects neuritic morphology. Our findings point to cross-talk between two prominent pathways that regulate neuronal migration.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

1. Positron Emission Tomography of Thoracic Malignancies. Reduction of Myocardial Fluorodeoxyglucose Uptake Artifacts With a Carbohydrate Restricted Diet.

Purpose: To reduce the artifact caused by cardiac uptake of F-18 fluorodeoxyglucose (FDG); we investigated the change in myocardial FDG uptake after placing a group of patients on a carbohydrate-restricted diet.Methods: Case control study involving 130 whole body FDG PET scans. 73 scans were of patients on carbohydrate-restriction; the remaining 57 were without dietary restrictions. Dietary intake for the last meal prior to scanning was recorded for both groups. Coronal and axial images were assessed and scored based on myocardial FDG uptake the presence of associated image artifacts.Results: Of the 73 patients on the diet, 50 did not consume carbohydrates, while of the 57 patients without dietary restriction, 13 did not consume carbohydrates. Of the 67 patients from both groups who consumed carbohydrates prior to their PET scan, 17 (25.4%) had a clinically significant image artifact versus only 6 (9.5%) of the 63 patients who did not consume carbohydrates (P = 0.018) in their meals prior to scanning. The odds ratio was calculated to be 3.23 (confidence interval 1.09-10.00), indicating that the risk a clinically significant image artifact will occur is 3.23 times higher for patients who consume carbohydrates in their last meal prior to scanning.Conclusion: A substantial reduction in the prevalence of myocardial FDG uptake image artifacts among patients who did not consume carbohydrates was observed. A carbohydrate dietary restriction prior to scanning may play a significant role in increasing lesion detectability and in preventing false negative scans when imaging for thoracic neoplasm.

Journal Article↗

Chiral high-performance liquid chromatography of N-octyl bicycloheptene dicarboximide and confirmatory studies using liquid chromatography-tandem mass spectrometry and two-dimensional nuclear magnetic resonance spectroscopy.

N-Octyl bicycloheptene dicarboximide (MGK 264) has exo and endo diastereomers. Each structure has a chiral center at the nitrogen side chain. Enantioselective separation of MGK 264 was achieved by normal-phase high-performance liquid chromatography (HPLC) using cellulose-based Chiralcel OD column with diode-array and optical rotation detectors. Peaks were isolated with the purpose of identifying their stereochemical structures. Molecular mass of the HPLC peaks and their structural information was determined by liquid chromatography-electrospray tandem mass spectrometry (LC-ES-MS-MS). A two-dimensional nuclear magnetic resonance (NMR) spectroscopic technique was used to establish the structural features. Correlation of the data obtained from chiral separation and NMR facilitated in unambiguous assignment of the HPLC peaks.

Chromatography, High Pressure Liquid↗

Structure of D-allose binding protein from Escherichia coli bound to D-allose at 1.8 A resolution.

ABC transport systems for import or export of nutrients and other substances across the cell membrane are widely distributed in nature. In most bacterial systems, a periplasmic component is the primary determinant of specificity of the transport complex as a whole. We report here the crystal structure of the periplasmic binding protein for the allose system (ALBP) from Escherichia coli, solved at 1.8 A resolution using the molecular replacement method. As in the other members of the family (especially the ribose binding protein, RBP, with which it shares 35 % sequence homology), this structure consists of two similar domains joined by a three-stranded hinge region. The protein is believed to exist in a dynamic equilibrium of closed and open conformations in solution which is an important part of its function. In the closed ligand-bound form observed here, D-allose is buried at the domain interface. Only the beta-anomer of allopyranose is seen in the crystal structure, although the alpha-anomer can potentially bind with a similar affinity. Details of the ligand-binding cleft reveal the features that determine substrate specificity. Extensive hydrogen bonding as well as hydrophobic interactions are found to be important. Altogether ten residues from both the domains form 14 hydrogen bonds with the sugar. In addition, three aromatic rings, one from each domain with faces parallel to the plane of the sugar ring and a third perpendicular, make up a hydrophobic stacking surface for the ring hydrogen atoms. Our results indicate that the aromatic rings forming the sugar binding cleft can sterically block the binding of any hexose epimer except D-allose, 6-deoxy-allose or 3-deoxy-glucose; the latter two are expected to bind with reduced affinity, due to the loss of some hydrogen bonds. The pyranose form of the pentose, D-ribose, can also fit into the ALBP binding cleft, although with lower binding affinity. Thus, ALBP can function as a low affinity transporter for D-ribose. The significance of these results is discussed in the context of the function of allose and ribose transport systems.

ATP-Binding Cassette Transporters↗

Motor neurons and Schwann cells distinguish between synaptic and extrasynaptic isoforms of laminin.

Laminin is a major component of all basement membranes. However, its composition varies with location because there are numerous forms of each of the three chains (alpha, beta, and gamma) that together comprise this heterotrimeric molecule. In the neuromuscular system, motor neurons and Schwann cells encounter unique trimers of laminin at different sites. The question thus arises as to whether these local differences in laminin composition act to direct the behavior of these two classes of cells. To address this question, we compared the responses of cultured rat motor neurons and Schwann cells to three forms of rodent laminin purified in our laboratory: Laminin-1 (Lmn-1; alpha1beta1gamma1); Laminin-11 (Lmn-11), a synapse-specific isoform consisting of alpha5beta2gamma1 chains; and a third preparation, a mixture of three kinds of laminin (Lmn-2/4/8), that is enriched for the alpha2, alpha4, beta1, beta2, and gamma1 subunits. Schwann cells attached best to a substrate of Lmn-2/4/8 and showed the weakest adhesion on Lmn-11. Interestingly, no such difference was seen with motor neurons; all three substrates promoted neuronal adhesion, survival, and neurite initiation equally well. With longer time in culture, however, these embryonic motor neurons extended extremely long processes on Lmn-1 and on Lmn-2/4/8, while those on Lmn-11 bore shorter neurites with unusually large, flattened growth cones. These results demonstrate that the behavior of Schwann cells and motor neurons can be regulated directly by the local laminin composition. The precise geometric relationship of these cells at the neuromuscular junction may therefore reflect the unique composition of laminin at this synapse.

Animals↗

Immediate early response of the p62 gene encoding a non-proteasomal multiubiquitin chain binding protein.

p62 is a cytoplasmic ubiquitin chain binding protein. Upon a variety of extracellular signals, both transcript and protein levels of p62 were rapidly increased. These signals include phorbol 12-myristate 13-acetate (PMA) and calcium ionomycin for peripheral blood mononuclear cells, serum or PDGF for serum-starved NIH3T3 cells, IL-3 for the G1 arrested pre-B cell line Ba/F3, and PMA for a human promyelocyte line U937. The elevation of p62 transcript level is due to temporal stabilization of mRNA and rapid activation of the p62 gene. Cycloheximide-induced enhanced transcription suggests the immediate early response of the p62 gene. The rapid induction of p62 indicates the presence of a novel ubiquitination-mediated regulatory mechanism during cell proliferation and differentiation.

3T3 Cells↗

Isolation of PSD-Zip45, a novel Homer/vesl family protein containing leucine zipper motifs, from rat brain.

Using monoclonal antibody against the 45 kDa postsynaptic density protein, we isolated a novel isoform of Homer/vesl. The NH2-terminal region containing a PDZ domain of this protein is identical to that of Homer/vesl, and the COOH-terminal region containing unique leucine zippers shows self-multimerization. We named this protein PSD-Zip45. In addition to specific binding of PSD-Zip45 mediated by a PDZ domain to the metabotropic glutamate receptors 1alpha or 5, the distribution of PSD-Zip45 transcripts is highly consistent with that of metabotropic glutamate receptor transcripts. The PSD-Zip45 is, therefore, the first candidate as receptor anchoring proteins containing leucine zipper motifs in the central nervous system.

Amino Acid Sequence↗

Regulation by interleukin-1beta of formation of a line of delimiting astrocytes following prenatal trauma to the brain of the mouse.

The regulation of perinatal glia limitans (GL) reformation by interleukin-1beta (IL-1beta) following prenatal neural trauma in the mouse was studied in lesioned fetal mice by immunocytochemistry and computer-assisted image analysis for presence and distribution of astrocytes and IL-1beta immunoreactivity (ir). Astrocytes stained with anti-glial fibrillary acidic protein (GFAP) were observed as a line of delimiting astrocytes (LDA) near the lesion edge on Postnatal Day 0 (P0, 2 days postlesion). At P6, a new and complete GL composed of GFAP-positive astrocytes was continuous with that of adjacent undamaged tissue. The new GL was located in the same area at P6 as was the LDA at P0, suggesting that the LDA is the precursor structure to a reformed GL. Astrocytes comprising the new GL were positive for anti-IL-1beta. The IL-1 receptor antagonist (IL-1ra), administered acutely into the lesion, produced a significantly decreased optical density of IL-1beta-ir at the LDA at P0 compared to animals that received injections of vehicle, human recombinant IL-1beta, or a combination injection of IL-1ra + IL-1beta. Furthermore, although GFAP-stained cells appeared at the lesion site, an organized LDA was not visible at P0 in IL-1ra-treated animals. Vehicle-, IL-1beta-, and combination-injected animals showed a robust LDA at the lesion site at P0. These data suggest that upregulation of IL-1beta in astrocytes and interaction of IL-1beta with the neural IL-1 receptor are important for reconstruction of the GL following prenatal lesion in the murine brain.

Animals↗

Behavior of tetrahydrolipstatin in biological model membranes and emulsions.

Tetrahydrolipstatin (orlistat) (S)-1-[(2S,3S)-3-hexyl-4-oxooxetan-2-yl]methyl]dodecyl N-formyl-L-leucinate, a potent inhibitor of pancreatic lipase, is hydrophobic, amphipathic, and water-insoluble. It binds irreversibly to pancreatic lipases and inhibits fat absorption. The focus of this investigation is on the distribution of orlistat in emulsified fat and vesicular membranes such as might be present in the intestine during fat absorption. The models used were unilamellar vesicles and microemulsion particles. [13C]orlistat was synthesized containing 99% 13C in the leucine carbonyl. Spectrawere collected on a Bruker DMX 500 Spectrometer. The chemical shift of the [13C]leucinate carbon was recorded in solvents with increasing hydrogen bonding capacity. The chemical shift moved downfield as H-bonding increased. [13C]orlistat was incorporated into triolein in the presence or absence of water, into sonocated unilamellar egg yolk phosphotidylcholine (EYPC) vesicles, and into microemulsions approximately 300 A in diameter containing triolein and phospholipid in roughly equal molar proportions. [13C] orlistat was soluble in triolein and had a chemical shift at 20 degrees C of 171.46 ppm. When a small amount of water was added, the chemical shift moved down field to 171.69 ppm. When [13C]orlistat was incorporated into EYPC unilamellar vesicles, the chemical shift increased to approximately 172.0 ppm at 25 degrees C, indicating an orientation of [13C]leucinate in orlistat closer to the aqueous interface of vesicles, i.e., more surface oriented. In all systems there was a modest downfield increase in chemical shift as the temperature was raised from 5 degrees to 46 degrees C. When small amounts of [13C]orlistat (1% relative to the emulsion mass) were incorporated into microemulsions, the chemical shift was identical to that in the unilamellar vesicles indicating a surface-like orientation of [13C]orlistat. However, when 3% was incorporated, two peaks appeared, one related to the surface at about 172 ppm, and one related to the core at about 171.65 ppm. Thus, orlistat first partitions into the surface and then when the surface is saturated, it moves into the more hydrophobic core. The fact that the two pools can be resolved using 13C NMR spectroscopy indicates a modestly slow exchange between the core and surface pools. Thus, the potent lipase inhibitor orlistat is ideally situated in the surface layer of emulsion particles and membranes for interaction with enzymes that superficially bind to such surfaces.

Emulsions↗

Comparison of methods for extracting linear solvent strength gradient parameters from gradient chromatographic data.

The linear solvent strength (LSS) theory of gradient elution is useful in the optimization of separations in high-performance liquid chromatography. While the fundamental parameters of this theory are defined in terms of isocratic behavior, gradient operation has been used previously to estimate those parameters to allow rapid optimization of the separation. In this study, various methods of extracting the LSS parameters from gradient retention data were examined. Sets of synthetic retention data were calculated directly from the equations of the LSS theory. When realistic experimental uncertainties were incorporated into these data sets, the LSS parameters used to generate the synthetic data were not recovered accurately unless special precautions were taken. For large molecules, an approximate LSS expression could be used to determine the solvent strength parameter with an error of less than 13%, which is comparable to or better than those for the other methods evaluated.

Chromatography, High Pressure Liquid↗

T lymphocyte mediated protection against facultative intracellular bacteria.

Acquired immunity against intracellular bacteria is T cell dependent. T cells play a major role in protection against intracellular bacteria, but bacterial antigens recognized by T cells have been studied less extensively than bacterial antigens recognized by B cells. Using T lymphocytes from animals immunized against Brucella abortus, we have screened a bacterial genomic library for genes encoding antigens recognized by T cells. Lymphocytes that proliferated to B. abortus proteins were characterized for phenotype and cytokine activity. Bovine and murine lymphocytes recognized common bacterial antigens and possessed similar cytokine profiles, suggesting an analogous immune response in these two animal species. In vivo protection afforded by a particular cell type is dependent on the bacterial antigens presented and mechanisms of antigen presentation. MHC class I and class II gene knockout animals infected with B. abortus have demonstrated that protection to B. abortus is especially dependent on CD8+ T cells. Knowing the cells required for protection, vaccines can be designed to elicit the protective subset of lymphocytes. Currently, we are testing several recombinant B. abortus proteins using different immunization strategies. Finally, bacterial genes activated following intracellular phagocytosis are being examined using a novel, reporter system adapted to B. abortus.

Animals↗

Capsular synovial metaplasia as a common response to both textured and smooth implants.

Recent reports suggested that the presence of synovial metaplasia in the capsular tissues of breast implants is greater with textured-shelled implants compared with smooth. Textured implants, however, have become popular only in the last few years. Therefore, the studies do not address the possibility that synovial metaplasia may be a dynamic process related to time (e.g., implant age) rather than implant shell surface. In the current study, 159 implant capsules (85 patients) removed between February of 1992 and July of 1993 at UCLA Medical Center were evaluated histologically and correlated with clinical data, including the age of implants. Synovial metaplasia was identified in 40 percent (64 of 159) of the capsule specimens. A logistic regression analysis that removed the effect of implant age demonstrated no correlation of implant shell type (textured versus smooth) with the presence of synovial metaplasia. Gel bleed, implant location, pericapsular fluid, implant rupture, and capsular contracture also did not have any significant association with synovial metaplasia in the current study. The incidence of synovial metaplasia appears to decrease with age (77 percent at < 5 years; 22 percent at > 15 years). Our findings suggest that synovial metaplasia is not rare and in fact may be a fairly common transitional histologic finding. It may be part of the common progression that occurs at the implant-capsule interface. The clinical significance remains unknown.

Adult↗

Quantitative polymerase chain reaction does not improve preoperative prostate cancer staging: a clinicopathological molecular analysis of 121 patients.

PURPOSE: To improve on current staging and monitoring methods for prostate cancer, we applied the technique of quantitative polymerase chain reaction to measure the degree of tumor burden in the circulation and correlate this with pathological tumor stage. A reproducible, highly sensitive and specific, reverse transcriptase-polymerase chain reaction amplification technique to quantify prostate specific antigen (PSA) and prostate specific membrane antigen gene expression in the peripheral circulation was developed. Using a 32phosphorus-gamma-adenosine triphosphate-5'PSA and prostate specific membrane antigen primer incorporation assay, the ribonucleic acid signal extracted from a single neoplastic cell (LNCaP) premixed in 10 cc normal whole blood could be amplified. PSA and prostate specific membrane antigen polymerase chain reaction indexes have been created for clinical application. MATERIALS AND METHODS: From September 1994 through July 1995 specimens from 121 patients were prospectively analyzed for PSA and prostate specific membrane antigen signals. RESULTS: Circulating PSA producing cells were present in 29 of 33 patients (88%) with metastatic prostate cancer. Two of 19 patients (11%) with no known prostate cancer exhibited positive signals (1 later had prostate cancer), establishing a sensitivity of 88% and specificity of 94% for our assay. Positive PSA polymerase chain reaction signals were detected in 30 of 51 patients (59%) with stages pT1 and pT2 disease and in 13 of 18 (72%) with stage pT3 cancer. No statistically significant relationship of a positive PSA polymerase chain reaction signal to pathological stage, tumor grade, apical involvement or positive surgical margins was found, and no benefit was derived by measuring the quantity of circulating PSA polymerase chain reaction signals. Circulating prostate specific membrane antigen polymerase chain reaction signals were identified mostly in patients with advanced prostate cancer and offered no benefit to preoperative staging. CONCLUSIONS: Given the high incidence of false positive signals in patients with pathologically determined localized disease, in our experience polymerase chain reaction based assays offer no immediate benefit for preoperative prostate cancer staging. The prognostic significance of detecting circulating prostate specific signals awaits longer followup in this cohort of patients, which is currently under study.

Antigens, Neoplasm↗