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991.
The transient receptor potential (TRP) multigene superfamily encodes integral membrane proteins that function as ion channels.
Members of this family are conserved in yeast, invertebrates and vertebrates. The TRP family is subdivided into seven subfamilies:
TRPC (canonical), TRPV (vanilloid), TRPM (melastatin), TRPP (polycystin), TRPML (mucolipin), TRPA (ankyrin) and TRPN (NOMPC-like);
the latter is found only in invertebrates and fish. TRP ion channels are widely expressed in many different tissues and cell
types, where they are involved in diverse physiological processes, such as sensation of different stimuli or ion homeostasis.
Most TRPs are non-selective cation channels, only few are highly Ca2+ selective, some are even permeable for highly hydrated Mg2+ ions. This channel family shows a variety of gating mechanisms, with modes of activation ranging from ligand binding, voltage
and changes in temperature to covalent modifications of nucleophilic residues. Activated TRP channels cause depolarization
of the cellular membrane, which in turn activates voltage-dependent ion channels, resulting in a change of intracellular Ca2+ concentration; they serve as gatekeeper for transcellular transport of several cations (such as Ca2+ and Mg2+), and are required for the function of intracellular organelles (such as endosomes and lysosomes). Because of their function
as intracellular Ca2+ release channels, they have an important regulatory role in cellular organelles. Mutations in several TRP genes have been
implicated in diverse pathological states, including neurodegenerative disorders, skeletal dysplasia, kidney disorders and
pain, and ongoing research may help find new therapies for treatments of related diseases. 相似文献
992.
993.
Li Y Kawakami N Ogola HJ Ashida H Ishikawa T Shibata H Sawa Y 《Applied microbiology and biotechnology》2011,90(6):1953-1962
l-aspartate dehydrogenase (EC 1.4.1.21; l-AspDH) is a rare member of amino acid dehydrogenase superfamily and so far, two thermophilic enzymes have been reported.
In our study, an ORF PA3505 encoding for a putative l-AspDH in the mesophilic bacterium Pseudomonas aeruginosa PAO1 was identified, cloned, and overexpressed in Escherichia coli. The homogeneously purified enzyme (PaeAspDH) was a dimeric protein with a molecular mass of about 28 kDa exhibiting a very
high specific activity for l-aspartate (l-Asp) and oxaloacetate (OAA) of 127 and 147 U mg−1, respectively. The enzyme was capable of utilizing both nicotinamide adenine dinucleotide (NAD) and nicotinamide adenine
dinucleotide phosphate (NADP) as coenzyme. PaeAspDH showed a T
m value of 48°C for 20 min that was improved to approximately 60°C by the addition of 0.4 M NaCl or 30% glycerol. The apparent
K
m values for OAA, NADH, and ammonia were 2.12, 0.045, and 10.1 mM, respectively; comparable results were observed with NADPH.
The l-Asp production system B consisting of PaeAspDH, Bacillus subtilis malate dehydrogenase and E. coli fumarase, achieved a high level of l-Asp production (625 mM) from fumarate in fed-batch process with a molar conversion yield of 89.4%. Furthermore, the fermentative
production system C released 33 mM of l-Asp after 50 h by using succinate as carbon source. This study represented an extensive characterization of the mesophilic
AspDH and its potential applicability for efficient and attractive production of l-Asp. Our novel production systems are also hopeful for developing the new processes for other compounds production. 相似文献
994.
Melø TM Håberg AK Risa Ø Kondziella D Henry PG Sonnewald U 《Neurochemical research》2011,36(10):1801-1808
Evaluating early changes in cerebral metabolism in hydrocephalus can help in the decision making and the timing of surgical
intervention. This study was aimed at examining the tricarboxylic acid (TCA) cycle rate and 13C label incorporation into neurotransmitter amino acids and other compounds 2 weeks after rats were subjected to kaolin-induced
progressive hydrocephalus. In vivo and ex vivo magnetic resonance spectroscopy (MRS), combined with the infusion of [1,6-13C]glucose, was used to monitor the time courses of 13C label incorporation into the different carbon positions of glutamate in the forebrains of rats with hydrocephalus as well
as in those of controls. Metabolic rates were determined by fitting the measured data into a one-compartment metabolic model.
The TCA cycle rate was 1.3 ± 0.2 μmoles/gram/minute in the controls and 0.8 ± 0.4 μmoles/gram/minute in the acute hydrocephalus
group, the exchange rate between α-ketoglutarate and glutamate was 4.1 ± 2.5 μmoles/gram/minute in the controls and 2.7 ± 2.6 μmoles/gram/minute
in the hydrocephalus group calculated from in vivo MRS. There were no statistically significant differences between these
rates. Hydrocephalus caused a decrease in the amounts of glutamate, alanine and taurine. In addition, the concentration of
the neuronal marker N-acetyl aspartate was decreased. 13C Labelling of most amino acids derived from [1,6-13C]glucose was unchanged 2 weeks after hydrocephalus induction. The only indication of astrocyte impairment was the decreased
13C enrichment in glutamine C-2. This study shows that hydrocephalus causes subtle but significant alterations in neuronal metabolism
already early in the course of the disease. These sub-lethal changes, however, if maintained and if ongoing might explain
the delayed and programmed neuronal damage as seen in chronic hydrocephalus. 相似文献
995.
996.
The pre-mRNA processing (Prp1) gene encodes a spliceosomal protein. It was firstly identified in fission yeast and plays a regular role during spliceosome
activation and cell cycle. Plant Prp1 genes have only been identified from rice, Sorghum and Arabidopsis
thaliana. In this study, we reported the identification and isolation of a novel Prp1 gene from barley, and further explored its expressional pattern by using real-time quantitative RT-PCR, promoter prediction
and analysis of microarray data. The putative barley Prp1 protein has a similar primary structure features to those of other
known Prp1 protein in this family. The results of amino acid comparison indicated that Prp1 protein of barley and other plant
species has a highly conserved 3′ termnal region while their 5′ sequences greatly varied. The results of expressional analysis
revealed that the expression level of barley Prp1 gene is always stable in different vegetative tissues, except it is up-regulated at the mid- and late stages of seed development
or under the condition of cold stress. This kind of expressional pattern for barley Prp1 is also supported by our results of comparison of microarray data from barley, rice and Arabidopsis. For the molecular mechanism of its expressional pattern, we conclude that the expression of Prp1 gene may be up-regulated by the increase of pre-mRNAs and not be constitutive or ubiquitous. 相似文献
997.
Debbie C. Crans Samantha Schoeberl Ernestas Gaidamauskas Bharat Baruah Deborah A. Roess 《Journal of biological inorganic chemistry》2011,16(6):961-972
The interactions of metabolites of the antidiabetic vanadium-containing drug bis(maltolato)oxovanadium(IV) (BMOV) with lipid
interface model systems were investigated and the results were used to describe a potentially novel mechanism by which these
compounds initiate membrane-receptor-mediated signal transduction. Specifically, spectroscopic studies probed the BMOV oxidation
and hydrolysis product interaction with interfaces created from cetyltrimethylammonium bromide (CTAB) which mimics the positively
charged head group on phosphatidylcholine. 1H and 51V NMR spectroscopies were used to determine the location of the dioxobis(maltolato)oxovanadate(V) and the maltol ligand in
micelles and reverse micelles by measuring changes in the chemical shift, signal linewidth, and species distribution. Both
micelles and reverse micelles interacted similarly with the complex and the ligand, suggesting that interaction is strong
as anticipated by Coulombic attraction between the positively charged lipid head group and the negatively charged complex
and deprotonated ligand. The nature of the model system was confirmed using dynamic light scattering studies and conductivity
measurements. Interactions of the complex/ligand above and below the critical micelle concentration of micelle formation were
different, with much stronger interactions when CTAB was in the form of a micelle. Both the complex and the ligand penetrated
the lipid interface and were located near the charged head group. These studies demonstrate that a lipid-like interface affects
the stability of the complex and raise the possibility that ligand exchange at the interface may be important for the mode
of action for these systems. Combined, these studies support recently reported in vivo observations of BMOV penetration into
3T3-L1 adipocyte membranes and increased translocation of a glucose transporter to the plasma membrane. 相似文献
998.
999.
Calpastatin (CAST) is an important gene for meat quality traits in livestock and poultry. The cDNA of caprine CAST gene was amplified for the first time using RACE-PCR. Results showed the full-length cDNA of caprine CAST gene (Accession no. GU944861) was 2435 base pair (bp) and contained a 2187 bp open reading frame encoding a protein with
728 amino acid residues. Bioinformatic analysis indicated that caprine CAST cDNA was 89.8–95.4, 83.5–92.2, 72.8–81.8 and 69.8–73.5% identical to sheep, cattle, pig and human CAST cDNA. It was predicted that caprine CAST contained four conserved domains with 42 serine phosphorylation loci, 18 threonine
phosphorylation loci, 1 tyrosine phosphorylation locus and 5 specific PKC phosphorylation loci. This work provided an important
experimental basis for further research on the function of CAST in goat. 相似文献
1000.
Wei-Hsin Chen Ching-Liang Hsieh Chun-Ping Huang Tzu-Jou Lin Jason TC Tzen Tin-Yun Ho Yi-Wen Lin 《Journal of biomedical science》2011,18(1):82