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81.
Akihiro Inagaki Soichiro Yamaguchi Hiromi Takahashi-Iwanaga Toshihiko Iwanaga Toru Ishikawa 《The Journal of membrane biology》2010,235(1):27-41
ClC-2, a member of the voltage-gated Cl− channel family, is expressed in the distal colonic surface epithelial cells of various species, but its functional significance
remains unclear. Here, by means of electrophysiological and molecular biological techniques, we have identified and characterized
a ClC-2-like conductance naturally expressed by surface epithelial cells acutely dissociated from rectal colon of rats fed
a standard diet. Whole-cell patch-clamp experiments showed that the surface cells, whether an amiloride-sensitive Na+ conductance was present or not, displayed a strong hyperpolarization-activated, inwardly rectifying Cl− current. Analysis both by in situ hybridization and immunohistochemistry confirmed the expression of ClC-2 in the rectal
surface epithelium. The native Cl− current shared common electrophysiological properties including voltage-dependent activation, anion selectivity sequence,
and Zn2+ sensitivity with that recorded from HEK293 cells transfected with ClC-2 cloned from rat rectal colon (rClC-2). Cell-attached
patch recordings on the surface cells revealed that native ClC-2-like currents activated only at potentials at least 40 mV
more negative than resting membrane potentials. In Ussing chamber experiments with rat rectal mucosa, either basolateral or
apical application of Zn2+ (0.1 mM), which inhibited both native ClC-2-like currents and recombinant rClC-2 currents, had little, if any, effects on
basal amiloride-sensitive short-circuit current. Collectively, these results not only demonstrate that a functional ClC-2-type
Cl− channel is expressed in rat rectal surface epithelium, but also suggest that the channel activity may be negligible and thus
nonessential for controlling electrogenic Na+ transport in this surface epithelium under basal physiological conditions. 相似文献
82.
Shengyu Lv Hongrui Liu Jian Cui Tomoka Hasegawa Hiromi Hongo Wei Feng Juan Li Bao Sun Akira Kudo Norio Amizuka Minqi Li 《Journal of molecular histology》2014,45(3):303-309
The purpose of this study was to investigate immunolocalization of collagenolytic enzymes including cathepsin K, matrix metalloproteinase (MMP) 1 and 2 in the compressed periodontal ligament (PDL) during orthodontic tooth movement using a periostin deficient (Pn-/-) mouse model. Twelve-week-old male mice homozygous for the disrupted periostin gene and their wild type (WT) littermates were used in these experiments. The tooth movement was performed according to Waldo’s method, in which elastic bands of 0.5 mm thickness were inserted between the first and second upper molars of mice under anesthesia. At 1 and 3 days after orthodontic force application, mice were fixed with transcardial perfusion of 4 % paraformaldehyde in 0.1 M phosphate buffer (pH 7.4), and the first molars and peripheral alveolar bones were extracted for histochemical analyses. Compared with WT mice, immunolocalization of cathepsin K, MMP1 and MMP2 was significantly decreased at 1 and 3 days after orthodontic tooth movement in the compressed PDL of Pn-/- mice, although MMP1-reactivity and MMP2-reactivity decreased at different amounts. Very little cathepsin K-immunoreactivity was observed in the assessed regions of Pn-/- mice, both before and after orthodontic force application. Furthermore, Pn-/- mice showed a much wider residual PDL than WT mice. Taken together, we concluded that periostin plays an essential role in the function of collagenolytic enzymes like cathepsin K, MMP1 and MMP2 in the compressed PDL after orthodontic force application. 相似文献
83.
84.
Upregulation of cAMP is a new functional signal pathway of Klotho in endothelial cells 总被引:3,自引:0,他引:3
Yang J Matsukawa N Rakugi H Imai M Kida I Nagai M Ohta J Fukuo K Nabeshima Y Ogihara T 《Biochemical and biophysical research communications》2003,301(2):424-429
We measured angiotensin I-converting enzyme (ACE) activity in a human endothelial cell to characterize the intracellular signal pathways of Klotho. COS-1 cells transfected with naked mouse membrane-form klotho plasmid DNA (pCAGGS-klotho) translated proper Klotho protein. This translated Klotho protein was secreted into the culture medium. Furthermore, ACE activity in human umbilical vein endothelial cells (HUVEC) was upregulated when HUVEC were co-cultured with COS-1 cells that were pre-transfected with pCAGGS-klotho. The conditioned medium from COS-1 cells pre-transfected with pCAGGS-klotho also dose-dependently upregulated ACE in HUVEC. In addition, the conditioned medium induced time- and dose-dependent enhancement of cAMP production in HUVEC. Rp-cAMP, an inhibitor of cAMP-dependent protein kinase A (PKA), inhibited the upregulation of ACE by Klotho protein. Our results suggest that mouse membrane-form Klotho protein acts as a humoral factor to increase ACE activity in HUVEC via a cAMP-PKA-dependent pathway. These findings may provide a new insight into the mechanism of Klotho protein. 相似文献
85.
The characteristics of root respiration of melon were examinedwith an oxygen electrode. The Hofstee plot of root respirationbreaks into two straight lines. The results of cyanide inhibitionexperiments and curve-fitting analysis suggest that one cyanide-insensitiveand two cyanide-sensitive oxidases operate in melon roots. (Received December 24, 1976; ) 相似文献
86.
87.
Furuhata S Ando K Oki M Aoki K Ohnishi S Aoyagi K Sasaki H Sakamoto H Yoshida T Ohnami S 《Molecular and cellular biochemistry》2007,298(1-2):125-138
Among the many tissue stem or progenitor cells recently being unveiled, endothelial progenitor cells (EPCs) have attracted
particular attention, not only because of their cardinal role in vascular biology and embryology but also because of their
potential use in the therapeutic development of a variety of postnatal diseases, including cardiovascular and peripheral vascular
disorders and cancer. The aim of this study is to provide some basic and comprehensive information on gene expression of EPCs
to characterize the cells in molecular terms. Here, we focus on EPCs derived from CD34-positive mononuclear cells of human
umbilical cord blood. The EPCs were purified and expanded in culture and analyzed by a high-density oligonucleotide microarray
and real-time RT-PCR analysis. We identified 169 up-regulated and 107 down-regulated genes in the EPCs compared with three
differentiated endothelial cells of human umbilical vein endothelial cells (HUVEC), human lung microvascular endothelial cells
(LMEC) and human aortic endothelial cells (AoEC). It is expected that the obtained list include key genes which are critical
for EPC function and survival and thus potential targets of EPC recognition in vivo and therapeutic modulation of vasculogenesis
in cancer as well as other diseases, in which de novo vasculogenesis plays a crucial role. For instance, the list includes
Syk and galectin-3, which encode protein tyrosine kinase and β-galactoside-binding protein, respectively, and are expressed higher in EPCs than
the three control endothelial cells. In situ hybridization showed that the genes were expressed in isolated cells in the fetal
liver at E11.5 and E14.5 of mouse development. 相似文献
88.
Nguyen M Doan V Pham T Nguyen V Nguyen B Oishi T Tokura H 《Journal of human ergology》2003,32(2):107-110
Thermally comfortable zones in Vietnamese were investigated during winter in Hanoi. The subjects were 21 males (age: 19.7 +/- 0.4 yrs; height: 165 +/- 1.5 cm; body mass: 55.1 +/- 1.1 kg) and 19 females (age: 19.7 +/- 0.4 yrs; height; 155.6 +/- 1.7 cm; body mass: 45.6 +/- 1.3 kg). Each participant entered singly the climatic chamber controlled at 22 degrees C and 40% RH. After 20 min rest, the participant was requested to indicate on a 7-point scale (Table 1) how he or she felt to the room temperature given. Then, the room temperature increased by 1 degrees C over 10 min every 20 min. Just before the rise of the room temperature, the participant judged his or her thermal sensation. More than 90% of the participants felt 24-29 degrees C of the room temperature as "slightly cool", "neutral" and "slightly warm" (Table 2). We defined these sensations as "thermally comfort". These thermally comfortable zones were quite higher than those (20-24 degrees C) recommended by ISO-7730 (1994). We discussed these discrepancies in terms of higher establishment of thermoregulatory set-point in the Vietnamese. 相似文献
89.
90.
Osaki Y Shirabe T Nakanishi H Wakagi T Yoshimura E 《Metallomics : integrated biometal science》2009,1(4):353-358
Phytochelatins (PCs), non-protein peptides with the general structure [(γ-Glu-Cys)n-Gly (n≥ 2)], are involved in the detoxification of toxic heavy metals mainly in higher plants. The synthesis of the peptides is mediated by phytochelatin synthase (PCS), which is activated by a range of heavy metals. CmPCS, a PCS-like gene found in the genomic DNA of the primitive red alga Cyanidioschyzon merolae, was isolated and a recombinant protein (rCmPCS) fused with a hexahistidine tag at the N-terminus of CmPCS was produced. The finding that this protein mediated PC synthesis from glutathione in a metal-dependent way clearly establishes that rCmPCS is functional. The maximum activity was attained at a reaction temperature of 50 °C, considerably higher than the temperature required for the maximal activity of PCS isolated from the higher plant Silene cucubalus, probably due to the alga being a thermophile. CmPCS showed optimal pH in a slightly higher region than higher plant PCSs, probably due to the less effective charge relay network in the catalytic triad. In addition, the pattern of enzyme activation by metal ions was specific to rCmPCS, with Ag+, Cu2+, and Hg2+ showing only limited activation. In contrast to other eukaryotic PCSs, CmPCS has an extra domain in the N-terminal region from residues 1 to 109, and contains fewer cysteine residues in the C-terminal domain. These differences may be responsible for the metal specificity of the activation of CmPCS. Although the enzyme preparation lost PCS activity progressively when stored at 4 °C, the inclusion of Cd2+ in the preparation effectively prevented the reduction of activity. Furthermore, Cd2+ effectively restored the activity of the inactivated enzyme. These results indicate that Cd2+ ions bind the enzyme to maintain the structural integrity of the peptides. 相似文献