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61.
Calcium ions can trigger an emission of light from Veretillum cynomorium lumisomes (bioluminescent vesicles) under conditions where they are not lysed. This process does not require a metabolically-linked source of energy, but is dependent upon the nature of the ions present inside and outside the vesicles. The Ca2+-triggered bioluminescence is stimulated by an asymmetrical distribution of cations or anions. Either high internal sodium or high external chloride is required for the maximal effect. When sodium is present outside the structure and potassium inside, the slow inward diffusion of calcium is decreased. Unbalanced diffusion of internal cations also stimulates the bioluminescence, suggesting control of the calcium influx by an electrochemical gradient. It is assumed that rapid outward diffusion of sodium or inward diffusion of chloride generates an electrical potential difference (inside negative) which drives the Ca2+-influx. With purified lumisomes it has been shown that Ca2+-triggered bioluminescence and calcium uptake (presumably net uptake) were correlated. In two instances uptake of the lipophilic cation dibenzyldimethylammonium has given direct evidence for the existence of a potential difference. With NaCl-loaded vesicles, it has not been possible to demonstrate an uptake of lipophilic cations but experiments with 22Na and 42K indicated a higher rate of sodium efflux, in accord with the proposed hypothesis. 相似文献
62.
The molecular mechanisms of toxicity associated with cytoplasmic accumulation of TAR DNA binding protein-43(TDP-43),a pathological feature of many neurodegenera... 相似文献
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Guigal N Rodriguez M Cooper RN Dromaint S Di Santo JP Mouly V Boutin JA Galizzi JP 《The Journal of biological chemistry》2002,277(49):47407-47411
Uncoupling protein-3 (UCP3), which is expressed abundantly in skeletal muscle, is one of the carrier proteins dissipating the transmitochondrial electrochemical gradient as heat and has therefore been implicated in the regulation of energy metabolism. Myoblasts or differentiated muscle cells in vitro expressed little if any UCP3, compared with the levels detected in biopsies of skeletal muscle. In the present report, we sought to investigate UCP3 mRNA expression in human muscle generated by myoblast transplantation in the skeletal muscle of an immunodeficient mouse model. Time course experiments demonstrated that 7-8 weeks following transplantation fully differentiated human muscle fibers were formed. The presence of differentiated human muscle fibers was assessed by quantitative PCR measurement of the human alpha-actin mRNA together with immunohistochemical staining using specific antibodies for spectrin and the slow adult myosin heavy chain. Interestingly, we found that the expression of UCP3 mRNA was dependant on human muscle differentiation and that the UCP3 mRNA level was comparable with that found in human muscle biopsies. Moreover, the human UCP3 (hUCP3) promoter seems to be fully functional, since triiodothyronine treatment of the mice not only stimulated the mouse UCP3 (mUCP3) mRNA expression but also strongly stimulated the hUCP3 mRNA expression in human fibers formed after myoblast transplantation. To our knowledge, this is the first time that primary myoblasts could be induced to express the UCP3 gene at a level comparable of that found in human muscle fibers. 相似文献
65.
Françoise Simon-Plas Kees Venema Jean-Pierre Grouzis Rémy Gibrat Jacqueline Rigaud Claude Grignon 《The Journal of membrane biology》1991,120(1):51-58
Summary The purified (H+ATPase from corn roots plasma membrane inserted spontaneously into preformed bilayer from soybean lipids. The yield of the protein insertion, as measured from its H+-pumping activity, increased as a function of lipids and protein concentrations. In optimum conditions, all the (H+)ATPase molecules were closely associated with liposomes, exhibiting a high H+-pumping activity (150,000% quenching· min–1·mg–1 protein of the probe 9-amino-6-chloro-2-methoxyacridine). The insertion was achieved within a few seconds. No latency of the (H+)ATPase hydrolytic activity was revealed when lysophosphatidylcholine was added to permeabilize the vesicles. This indicated that the (H+)ATPase molecules inserted unidirectionally, the catalytic sites being exposed outside the vesicles (inside-out orientation), and thus freely accessible to Mg-ATP. The nondelipidated (H+)ATPase could also functionally insert into bilayer from PCPEPG or PCPEPI, due to the presence of both hydrophobic defects promoted by PE, and negative phospholipids specifically required by the (H+)ATPase from corn roots. The detergent octylglucoside facilitated the delipidated (H+)ATPase reinsertion probably by promoting both a proper protein conformation and hydrophobic defects in the bilayer. Lysophosphatidylcholine facilitated the delipidated protein insertion only when hydrophobic defects were already present, and thus seemed only capable to ensure a proper protein conformation 相似文献
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The role of cytokines in osteoarthritis pathophysiology 总被引:54,自引:0,他引:54
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Target-dependent on/off switch increases ribozyme fidelity 总被引:2,自引:0,他引:2
69.
When the differential fluorescence emission at 515 nm of receptor-rich membrane fragments from Torpedo marmorata labelled with quinacrine is followed by energy transfer, addition of a high concentration of an agonist such as 0.4 mm-carbamylcholine or 0.4 mm-phenyltrimethylammonium causes a fast (unresolved) increase of fluorescence intensity followed by a slow (minute range) decrease, which leads to a final stable level. On the other hand, a stepwise addition of agonist at low concentrations gives only a slow fluorescence increase. Antagonists, such as flaxedil and d-tubocurarine, at all the concentrations tested, bring about exclusively slow fluorescence increases. Decamethonium at 0.4 mm gives no slow reaction but only a fast (unresolved) increase without transient overshoot.Addition of a local anaesthetic reduces the amplitude of the fluorescence response to carbamylcholine. The α-toxin from Naja nigricollis does not cause any change of fluorescence intensity but blocks the effect of the cholinergic agonists and antagonists.Dissolution of the membrane fragments by a non-ionic detergent abolishes the fast transient reaction triggered by the agonists but preserves the slow ones observed in the presence of agonists or antagonists. The data are interpreted in terms of a three-state model, a revised version of the model of Katz & Thesleff (1957): the fast transient reaction brought about by the agonists being assigned to the “activation” of the receptor-ionophore complex and the slow one to its “desensitization”. 相似文献
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