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91.
92.
We integrated biological experimental data with mathematical modelling to gain insights into the role played by L-alanine in amino acid-stimulated insulin secretion (AASIS) and in D-glucose-stimulated insulin secretion (GSIS), details important to the understanding of complex β-cell metabolic coupling relationships. We present an ordinary differential equations (ODEs) based simplified kinetic model of core metabolic processes leading to ATP production (glycolysis, TCA cycle, L-alanine-specific reactions, respiratory chain, ATPase and proton leak) and Ca2+ handling (essential channels and pumps in the plasma membrane) in pancreatic β-cells and relate these to insulin secretion. Experimental work was performed using a clonal rat insulin-secreting cell line (BRIN-BD11) to measure the consumption or production of a range of important biochemical parameters (D-glucose, L-alanine, ATP, insulin secretion) and Ca2+ levels. These measurements were then used to validate the theoretical model and fine-tune the parameters. Mathematical modelling was used to predict L-lactate and L-glutamate concentrations following D-glucose and/or L-alanine challenge and Ca2+ levels upon stimulation with a non metabolizable L-alanine analogue. Experimental data and mathematical model simulations combined suggest that L-alanine produces a potent insulinotropic effect via both a stimulatory impact on β-cell metabolism and as a direct result of the membrane depolarization due to Ca2+ influx triggered by L-alanine/Na+ co-transport. Our simulations indicate that both high intracellular ATP and Ca2+ concentrations are required in order to develop full insulin secretory responses. The model confirmed that K+ ATP channel independent mechanisms of stimulation of intracellular Ca2+ levels, via generation of mitochondrial coupling messengers, are essential for promotion of the full and sustained insulin secretion response in β-cells.  相似文献   
93.
Moment‐to‐moment adjustment of cerebral blood flow (CBF) via neurovascular coupling has an essential role in maintenance of healthy cognitive function. In advanced age, increased oxidative stress and cerebromicrovascular endothelial dysfunction impair neurovascular coupling, likely contributing to age‐related decline of higher cortical functions. There is increasing evidence showing that mitochondrial oxidative stress plays a critical role in a range of age‐related cellular impairments, but its role in neurovascular uncoupling remains unexplored. This study was designed to test the hypothesis that attenuation of mitochondrial oxidative stress may exert beneficial effects on neurovascular coupling responses in aging. To test this hypothesis, 24‐month‐old C57BL/6 mice were treated with a cell‐permeable, mitochondria‐targeted antioxidant peptide (SS‐31; 10 mg kg?1 day?1, i.p.) or vehicle for 2 weeks. Neurovascular coupling was assessed by measuring CBF responses (laser speckle contrast imaging) evoked by contralateral whisker stimulation. We found that neurovascular coupling responses were significantly impaired in aged mice. Treatment with SS–31 significantly improved neurovascular coupling responses by increasing NO‐mediated cerebromicrovascular dilation, which was associated with significantly improved spatial working memory, motor skill learning, and gait coordination. These findings are paralleled by the protective effects of SS–31 on mitochondrial production of reactive oxygen species and mitochondrial respiration in cultured cerebromicrovascular endothelial cells derived from aged animals. Thus, mitochondrial oxidative stress contributes to age‐related cerebromicrovascular dysfunction, exacerbating cognitive decline. We propose that mitochondria‐targeted antioxidants may be considered for pharmacological microvascular protection for the prevention/treatment of age‐related vascular cognitive impairment (VCI).  相似文献   
94.
Interfollicular epidermal (IFE) homeostasis is a major physiological process allowing maintenance of the skin barrier function. Despite progress in our understanding of stem cell populations in different hair follicle compartments, cellular mechanisms of IFE maintenance, in particular, whether a hierarchy of progenitors exists within this compartment, have remained controversial. We here used multicolour lineage tracing with Brainbow transgenic labels activated in the epidermis to track individual keratinocyte clones. Two modes of clonal progression could be observed in the adult murine dorsal skin. Clones attached to hair follicles showed rapid increase in size during the growth phase of the hair cycle. On the other hand, clones distant from hair follicles were slow cycling, but could be mobilized by a proliferative stimulus. Reinforced by mathematical modelling, these data support a model where progenitor cycling characteristics are differentially regulated in areas surrounding or away from growing hair follicles. Thus, while IFE progenitors follow a non‐hierarchical mode of development, spatiotemporal control by their environment can change their potentialities, with far‐reaching implications for epidermal homeostasis, wound repair and cancer development.  相似文献   
95.
Circadian rhythms govern vital functions. Their disruption provokes metabolic imbalance favouring obesity and type-2 diabetes. The aim of the study was to assess the role of clock genes in human prediabetes. To this end, genotype-phenotype associations of 121 common single nucleotide polymorphisms (SNPs) tagging ARNTL, ARNTL2, CLOCK, CRY1, CRY2, PER1, PER2, PER3, and TIMELESS were assessed in a study population of 1,715 non-diabetic individuals metabolically phenotyped by 5-point oral glucose tolerance tests. In subgroups, hyperinsulinaemic-euglycaemic clamps, intravenous glucose tolerance tests, and magnetic resonance imaging/spectroscopy were performed. None of the tested SNPs was associated with body fat content, insulin sensitivity, or insulin secretion. Four CRY2 SNPs were associated with fasting glycaemia, as reported earlier. Importantly, carriers of these SNPs’ minor alleles revealed elevated fasting glycaemia and, concomitantly, reduced liver fat content. In human liver tissue samples, CRY2 mRNA expression was directly associated with hepatic triglyceride content. Our data may point to CRY2 as a novel switch in hepatic fuel metabolism promoting triglyceride storage and, concomitantly, limiting glucose production. The anti-steatotic effects of the glucose-raising CRY2 alleles may explain why these alleles do not increase type-2 diabetes risk.  相似文献   
96.
T lymphocytes recognize the synthetic polypeptides GA and GLT and the natural antigen LDHB and are thereby stimulated to proliferate in vitro. Simultaneously with the antigen, T cells recognize class II MHC molecules of the antigen-presenting cell and the T-cell proliferation can therefore be inhibited by the addition of monoclonal antibodies specific for either A (AA ) or E (EF ) molecules. Antibody blocking of in vitro responses thus provides an opportunity to test the rules governing the selection of class II molecules (A versus E) in the recognition of different antigens. To determine these rules we tested T cells for some 40 strains (classical inbred strains and B10.W lines) carrying H-2 haplotypes derived from wild mice) for their proliferative response to GA, GLT, and LDHB. Strains that responded were then tested in the antibody-blocking assay to determine the class II context of the response. The response to GA occurred always in the context of the A molecule; no single instance was found of the response being channelled through the E molecule. Of the 19 different A molecules (A allomorphs) that could be tested, nine (47 percent) were able to provide the context for GA recognition (and hence conferred responsiveness), while the rest failed to do so (conferred nonresponsiveness). Of the 17 informative cases tested for the response to LDHB, 14 channelled the response through the A molecule, while, in the remaining cases, the cells failed to respond altogether. And again, there was no case where the response was channelled through the E molecule. However, in two instances (of 14) the E molecule provided the context for the stimulation of suppressor T cells, which then suppressed the response of helper T cells occurring in the context of the A molecule. Of the 19 cases tested for the response to GLT, eight channelled the response through the E molecule and two through the A molecule. The two cases of an E A switch were those in which the strains failed to express cell-surface E molecules as a result of a mutation in one of the E-encoding loci. These data indicate a remarkable but puzzling consistency in the channelling of the response to a given antigen via either A or E molecules. This consistency may be a hint that there is a link between the specificity of antigen (nonself) and MHC (self) recognition by T lymphocytes.Abbreviations used in this paper APC antigen-presenting cell - GA poly (Glu40Ala60) - GLT poly (Glu51Lys34Tyr15) - Ir immune response - LDHB lactate dehydrogenase 134 - MHC major histocompatibility complex - TH T helper (cell) - TS T suppressor (cell)  相似文献   
97.
Two alloantisera against hybridoma-derived IgE detected allotypic determinants expressed on the murine s chain. An antiserum raised in BALB/c mice against monoclonal IgE of C57BL/6 origin reacted exclusively with IgE of strains having Igh-1b (IgG2a) allotype. The second antiserum, C57BL/6 anti-BALB/c monoclonal IgE, reacted with IgE of strains having Igh-1a, Igh-1d, Igh-1e and Igh-1j allotypes. The genetic studies of (BALB/c x C57BL/6)F1 and backcross F2 animals indicated that the locus controlling the IgE allotype is linked to the Igh-1 locus. This was further confirmed by the possession of respective IgE allotypes by Igh-C congenic mice, BALB/c and BAB-14, C3H.SW/Hz and CWB/Hz. Thus, the allotype detected on the chain is controlled by the seventh murine immunoglobulin allotype locus, and should be designated as the Igh-7 allotype.Abbreviations used in this paper PCA passive cutaneous anaphylaxis - RID radioimmunodiffusion - i.p. intraperitoneally - EA egg albumin - Igh-C immunoglobulin heavy chain constant region locus - DNP 2,4-dinitrophenyl - PBS phosphate-buffered saline - NMS normal mouse serum - KLH keyhole limpet hemocyanin Visiting investigator supported by the Scientific and Humanistic Development Council from the Central University of Venezuela, currently at the following address: Consejo de Desarrollo Cientifico y Universidad Central de Venezuela, Av. Principal Urb. La Floresta Ota., Silenia Caracas, Venezuela.  相似文献   
98.
99.
The biological recognition of trigonal pyramids has been studied in a statistical analysis of the Cambridge Structural Data Base. The preferential stereochemistry of pyramidal anion-Lewis acid interactions is easily described for the phosphonyl dianion (R-PO3(2-), as found in the phosphate group) and the sulfonyl monoanion (R-SO3-, as found in the sulfate group) by trans/gauche conformational terminology. Interactions between these pyramidal anions and metals generally prefer gauche geometry (as defined by the R-X = O-Mn+ torsion angle, X = P or S). Interactions between phosphonyls and hydrogen bond donors likewise display a preference for gauche orientation. Interactions between sulfonyls and hydrogen bond donors exhibit a preference for gauche stereochemistry and also cluster in eclipsed regions. These hydrogen bond motifs provide a greater understanding of the function of pyramidal anions in biological structure and function. For example, interactions of the sulfate monoanion are important for the binding of heparin, a sulfated glycosaminoglycan, to antithrombin III.  相似文献   
100.
Purified Torpedo nobiliana electric organ acetylcholine receptor (AChR) was reconstituted into membranes containing natural phospholipids supplemented with cholesterol (25% w/w). The reconstituted system facilitates the study of the effects of drugs on the regulation of the AChR channel complex under both resting and carbachol (carb)-stimulated conditions. Neostigmine (Neo) was the only carbamate to induce activation of [3-H]-phencyclidine ([3-H]-PCP) binding to the channel sites, acting as a weak agonist. The activation of [3-H]-PCP binding is dependent upon the nature of the reconstituted systems, with carb/Neo activation ratios of 8, 3, and 1 for the intact purified AChR vesicles fraction (PVF), the PVF reconstituted in phospholipid/cholesterol (CRPVF), and the PVF reconstituted in phospholipid (RPVF), respectively. The carbamates Neo, physostigmine (Physo), and pyridostigmine (Pyrido) inhibited carb-activated [3-H]-PCP binding with Ki values of 10, 20, and 1,600 μM, respectively. The inhibition was mixed competitivenoncompetitive in nature. The characteristic response of CRPVF to carb-stimulated [22-Na] influx was inhibited by the three carbamates, with IC-50 values of 6,50, and 1,000 μM for Neo, Physo, and Pyrido, respectively. The quaternary ammonium organophosphate ecothiophate (Eco) inhibited carb-stimulated [22-Na] influx with potency similar to that of Neo. Preincubation of AChR preparation with the carbamates and ecothiophate caused a reduction in the binding of [125-I]-α- bungarotoxin ([125-I]-α-BGT) with the following decreasing order of potency: Neo < Physo < Eco < Pyrido. Calcium has a direct modulatory role on the time-course inhibition of [125-I]-α-BGT binding by these drugs. While we observed a high potency of Neo and Physo in inhibiting [125-I]-α-BGT binding, it was undetectable for the carbamate insecticide 2-methyl-2-(methylthio)propionaldehyde-O-(methylcarbamoyl)oxime (aldicarb). These data suggest that the potent anticholinesterase carbamate agents interact differently with the AChR and its ionic channel. Their interactions with the nicotinic AChR channel system can be described as (a) weakly agonist, (b) directly acting on the open conformation of the channel, and (c) blocking the AChR-binding sites.  相似文献   
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