27 research outputs found
Establishment of a monoclonal antibody for human LXRα: Detection of LXRα protein expression in human macrophages
Liver X activated receptor alpha (LXRα) forms a functional dimeric nuclear receptor with RXR that regulates the metabolism of several important lipids, including cholesterol and bile acids. As compared with RXR, the LXRα protein level in the cell is low and the LXRα protein itself is very hard to detect. We have previously reported that the mRNA for LXRα is highly expressed in human cultured macrophages. In order to confirm the presence of the LXRα protein in the human macrophage, we have established a monoclonal antibody against LXRα, K-8607. The binding of mAb K-8607 to the human LXRα protein was confirmed by a wide variety of different techniques, including immunoblotting, immunohistochemistry, and electrophoretic mobility shift assay (EMSA). By immunoblotting with this antibody, the presence of native LXR protein in primary cultured human macrophage was demonstrated, as was its absence in human monocytes. This monoclonal anti-LXRα antibody should prove to be a useful tool in the analysis of the human LXRα protein
The Molecular Outflows in the rho Ophiuchi Main Cloud: Implications For Turbulence Generation
We present the results of CO (J=3-2) and CO (J=1-0) mapping observations
toward the active cluster forming clump, L1688, in the rho Ophiuchi molecular
cloud. From the CO (J=3-2) and CO (J=1-0) data cubes, we identify five
outflows, whose driving sources are VLA 1623, EL 32, LFAM 26, EL 29, and IRS
44. Among the identified outflows, the most luminous outflow is the one from
the prototypical Class 0 source, VLA 1623. We also discover that the EL 32
outflow located in the Oph B2 region has very extended blueshifted and
redshifted lobes with wide opening angles. This outflow is most massive and
have the largest momentum among the identified outflows in the CO (J=1-0) map.
We estimate the total energy injection rate due to the molecular outflows
identified by the present and previous studies to be about 0.2 L_solar, larger
than or at least comparable to the turbulence dissipation rate [~(0.03 - 0.1)
L_solar]. Therefore, we conclude that the protostellar outflows are likely to
play a significant role in replenishing the supersonic turbulence in this
clump.Comment: 37 pages, 9 figures, accepted for publication in The Astrophysical
Journa
Cross-enhancement of ANGPTL4 transcription by HIF1 alpha and PPAR beta/delta is the result of the conformational proximity of two response elements
BACKGROUND: Synergistic transcriptional activation by different stimuli has been reported along with a diverse array of mechanisms, but the full scope of these mechanisms has yet to be elucidated. RESULTS: We present a detailed investigation of hypoxia-inducible factor (HIF) 1 dependent gene expression in endothelial cells which suggests the importance of crosstalk between the peroxisome proliferator-activated receptor (PPAR) β/δ and HIF signaling axes. A migration assay shows a synergistic interaction between these two stimuli, and we identify angiopoietin-like 4 (ANGPTL4) as a common target gene by using a combination of microarray and ChIP-seq analysis. We profile changes of histone marks at enhancers under hypoxia, PPARβ/δ agonist and dual stimulations and these suggest that the spatial proximity of two response elements is the principal cause of the synergistic transcription induction. A newly developed quantitative chromosome conformation capture assay shows the quantitative change of the frequency of proximity of the two response elements. CONCLUSIONS: To the best of our knowledge, this is the first report that two different transcription factors cooperate in transcriptional regulation in a synergistic fashion through conformational change of their common target genes
Evidence For Cloud-Cloud Collision and Parsec-Scale Stellar Feedback Within the L1641-N Region
We present high spatial resolution CO () images taken by the
Nobeyama 45m telescope toward a area including the L1641-N
cluster. The effective spatial resolution of the maps is , corresponding
to 0.04 pc at a distance of 400 pc. A recent 1.1 mm dust continuum map reveals
that the dense gas is concentrated in several thin filaments. We find that a
few dust filaments are located at the parts where CO () emission
drops sharply. Furthermore, the filaments have two-components with different
velocities. The velocity difference between the two-components is about 3 km
s, corresponding to a Mach number of 10, significantly larger than the
local turbulent velocity in the cloud. These facts imply that the collision of
the two components (hereafter, the cloud-cloud collision) possibly contributed
to the formation of these filaments. Since the two components appear to overlap
toward the filaments on the plane of the sky, the collision may have occurred
almost along the line of sight. Star formation in the L1641-N cluster was
probably triggered by such a collision. We also find several parsec-scale CO
shells whose centers are close to either the L1641-N cluster or V 380 Ori
cluster. We propose that these shells were created by multiple winds and/or
outflows from cluster YSOs, i.e., "protocluster winds." One exceptional dust
filament located at the western cloud edge lies along a shell; it is presumably
a part of the expanding shell. Both the cloud-cloud collision and protocluster
winds are likely to influence the cloud structure and kinematics in this
region.Comment: 44 pages, 12 figures, submitted to Ap
Direct evidence for pitavastatin induced chromatin structure change in the KLF4 gene in endothelial cells.
Statins exert atheroprotective effects through the induction of specific transcriptional factors in multiple organs. In endothelial cells, statin-dependent atheroprotective gene up-regulation is mediated by Kruppel-like factor (KLF) family transcription factors. To dissect the mechanism of gene regulation, we sought to determine molecular targets by performing microarray analyses of human umbilical vein endothelial cells (HUVECs) treated with pitavastatin, and KLF4 was determined to be the most highly induced gene. In addition, it was revealed that the atheroprotective genes induced with pitavastatin, such as nitric oxide synthase 3 (NOS3) and thrombomodulin (THBD), were suppressed by KLF4 knockdown. Myocyte enhancer factor-2 (MEF2) family activation is reported to be involved in pitavastatin-dependent KLF4 induction. We focused on MEF2C among the MEF2 family members and identified a novel functional MEF2C binding site 148 kb upstream of the KLF4 gene by chromatin immunoprecipitation along with deep sequencing (ChIP-seq) followed by luciferase assay. By applying whole genome and quantitative chromatin conformation analysis {chromatin interaction analysis with paired end tag sequencing (ChIA-PET), and real time chromosome conformation capture (3C) assay}, we observed that the MEF2C-bound enhancer and transcription start site (TSS) of KLF4 came into closer spatial proximity by pitavastatin treatment. 3D-Fluorescence in situ hybridization (FISH) imaging supported the conformational change in individual cells. Taken together, dynamic chromatin conformation change was shown to mediate pitavastatin-responsive gene induction in endothelial cells
Effects of temperature and humidity on cerebrovascular disease hospitalization in a super-aging society
Abstract Weather conditions influence the incidence of cardiovascular disease. However, few studies have investigated the association between weather temperature and humidity and cerebrovascular disease hospitalizations in a super-aging society. We included 606,807 consecutive patients with cerebrovascular disease admitted to Japanese acute-care hospitals between 2015 and 2019. The primary outcome was the number of cerebrovascular disease hospitalizations per day. Multilevel mixed-effects linear regression models were used to estimate the association of mean temperature and humidity, 1 day before hospital admission, with cerebrovascular disease hospitalizations, after adjusting for air pollution, hospital, and patient demographics. Lower mean temperatures and humidity < 70% or humidity ≧ 70% are associated with an increased incidence of cerebrovascular disease hospitalization (coefficient, − 1.442 [− 1.473 to − 1.411] per °C, p < 0.001, coefficient, − 0.084 [− 0.112 to − 0.056] per%, p < 0.001, and coefficient, 0.136 [0.103 to 0.168] per %, p < 0.001, respectively). Lower mean temperatures and extremely lower or higher humidity are associated with an increased incidence of cerebrovascular disease hospitalization in a super-aging society
Triterpene Functional Genomics in Licorice for Identification of CYP72A154 Involved in the Biosynthesis of Glycyrrhizin[C][W][OA]
This work reports the identification of a cytochrome P450 monooxygenase that is responsible for the biosynthesis of glycyrrhizin, a triterpenoid saponin found in licorice. The results reveal a function of CYP72A subfamily proteins as triterpene-oxidizing enzymes and provide proof of concept for engineering the production of high-value triterpenoid products in yeasts