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201.
202.
Ana San Gabriel Hisayuki Uneyama Takami Maekawa Kunio Torii 《Biochemical and biophysical research communications》2009,378(3):414-418
Calcium is an essential nutrient that induces a distinctive taste quality, but the sensing mechanism of calcium in the tongue is poorly understood. A recent study linked calcium to T1R3 receptor. Here, we propose another system for calcium taste involving the extracellular calcium-sensing receptor (CaSR). This G protein-coupled receptor that responds to calcium and magnesium cations is involved in calcium homeostasis regulating parathyroid and kidney functions. In this study, CaSR was found in isolated taste buds from rats and mice. It was expressed in a subset of cells in circumvallate and foliate papillae, with fewer cells in the fungiform papillae. This is the first evidence in mammals that locates CaSR in gustatory tissue and provides the basis for better understanding not only calcium taste but also the taste of multiple CaSR agonists. 相似文献
203.
Junichi Soh Naoki Okumura William W. Lockwood Hiromasa Yamamoto Hisayuki Shigematsu Wei Zhang Raj Chari David S. Shames Ximing Tang Calum MacAulay Marileila Varella-Garcia T?nu Vooder Ignacio I. Wistuba Stephen Lam Rolf Brekken Shinichi Toyooka John D. Minna Wan L. Lam Adi F. Gazdar 《PloS one》2009,4(10)
204.
Characterization of katD, a kinesin-like protein gene specifically expressed in floral tissues of Arabidopsis thaliana 总被引:3,自引:0,他引:3
Kinesin and kinesin-like proteins (KLPs) are microtubule-based motor proteins that play important roles in organelle transport. Based on the homology to these proteins, a katD cDNA has now been isolated from a library prepared from flowers of Arabidopsis thaliana ecotype Columbia. Sequence analysis of the katD cDNA revealed an open reading frame of 2691bp [corrected], encoding a protein of 987 amino acids. Comparison of the nucleotide sequences of katD genomic and cDNA clones revealed the presence of 18 introns, 17 of which conform to the GU-AG rule. The central region of the KatD polypeptide exhibits substantial amino acid sequence homology to the motor domain of kinesin heavy chains, although the motor domain of KatD appears to be phylogenetically distant from those of other KLPs in plants. The amino-terminal region of KatD shares marked sequence similarity with the calponin homology domain, whereas the approximately 240-residue carboxyl-terminal region shows no significant homology to other known proteins. The predicted secondary structure of KatD revealed the lack of an alpha-helical coiled coil structure typical of kinesin heavy chains, suggesting that KatD may function as a monomeric motor. A recombinant truncated KatD protein containing the putative motor domain was shown both to bind to mammalian microtubules in a manner dependent on a non-hydrolyzable ATP analog, and to possess microtubule-dependent ATPase activity. Immunoblot and Northern blot analyses showed that both KatD protein and mRNA are expressed specifically in floral tissues. These results suggest that the structurally distinct KatD protein functions as a floral tissue-specific motor protein. 相似文献
205.
Juge N Gray JA Omote H Miyaji T Inoue T Hara C Uneyama H Edwards RH Nicoll RA Moriyama Y 《Neuron》2010,68(1):99-112
Fasting has been used to control epilepsy since antiquity, but the mechanism of coupling between metabolic state and excitatory neurotransmission remains unknown. Previous work has shown that the vesicular glutamate transporters (VGLUTs) required for exocytotic release of glutamate undergo an unusual form of regulation by Cl(-). Using functional reconstitution of the purified VGLUTs into proteoliposomes, we now show that Cl(-) acts as an allosteric activator, and the ketone bodies that increase with fasting inhibit glutamate release by competing with Cl(-) at the site of allosteric regulation. Consistent with these observations, acetoacetate reduced quantal size at hippocampal synapses and suppresses glutamate release and seizures evoked with 4-aminopyridine in the brain. The results indicate an unsuspected link between metabolic state and excitatory neurotransmission through anion-dependent regulation of VGLUT activity. 相似文献
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208.
Hisayuki Amano Ken Itakura Masayoshi Maruyama Tomoko Ichisaka Masato Nakagawa Shinya Yamanaka 《BMC developmental biology》2006,6(1):11
Background
Embryonic stem cell-specific gene (ESG) 1, which encodes a KH-domain containing protein, is specifically expressed in early embryos, germ cells, and embryonic stem (ES) cells. Previous studies identified genomic clones containing the mouse ESG1 gene and five pseudogenes. However, their chromosomal localizations or physiological functions have not been determined. 相似文献209.
A sample of bacterial pili was prepared from Escherichia coli. An X-ray diffraction pattern was obtained from an oriented wet gel specimen in 0.01 m-phosphate buffer (pH 7.0) packed in a capillary tube. Sixteen independent spots were observed with the spacing of the outermost being 4.2 Å. Analysis of the diffraction pattern shows that the arrangement of subunits in pili rods is strictly simple-helical with 3.145 units being present in one turn of the helix and the axial rise per unit being 8.09o Å. 相似文献
210.