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Room Temperature Phosphorescence of 1-Bromo-4-(bromoacetyl) naphthalene Induced by Sodium Deoxycholate
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作者 YuWANG WeiJunJIN JianBingCHAO LiPingQIN 《Chinese Chemical Letters》 SCIE CAS CSCD 2004年第3期339-342,共4页
Sodium deoxycholate (NaDOC) could induce 1-bromo-4-(bromoacetyl) naphthalene (BBAN) to emit strong room temperature phosphorescence (RTP). Measurements of phosphore- scence spectra, peak intensity and polarization we... Sodium deoxycholate (NaDOC) could induce 1-bromo-4-(bromoacetyl) naphthalene (BBAN) to emit strong room temperature phosphorescence (RTP). Measurements of phosphore- scence spectra, peak intensity and polarization were used to investigate the solubilization of BBAN as a function of NaDOC concentration. 展开更多
关键词 Sodium deoxycholate 1-bromo-4-(bromoacetyl) naphthalene room temperature phos- phorescence.
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Role of platelet plasma membrane Ca^(2+)-ATPase in health and disease
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作者 William L Dean 《World Journal of Biological Chemistry》 CAS 2010年第9期265-270,共6页
Platelets have essential roles in both health and disease. Normal platelet function is required for hemostasis.Inhibition of platelet function in disease or by pharmacological treatment results in bleeding disorders.O... Platelets have essential roles in both health and disease. Normal platelet function is required for hemostasis.Inhibition of platelet function in disease or by pharmacological treatment results in bleeding disorders.On the other hand,hyperactive platelets lead to heart attack and stroke.Calcium is a major second messenger in platelet activation,and elevated intracellular calcium leads to hyperactive platelets.Elevated platelet calcium has been documented in hypertension and diabetes;both conditions increase the likelihood of heart attack and stroke. Thus,proper regulation of calcium metabolism in the platelet is extremely important.Plasma membrane Ca2+-ATPase(PMCA)is a major player in platelet calcium metabolism since it provides the only significant route for calcium efflux.In keeping with the important role of calcium in platelet function,PMCA is a highly regulated transporter.In human platelets,PMCA is activated by Ca2+/calmodulin,by cAMP-dependent phosphorylation and by calpain-dependent removal of the inhibitory peptide.It is inhibited by tyrosine phosphorylation and calpain-dependent proteolysis.In addition,the cellular location of PMCA is regulated by a PDZ-domain-dependent interaction with the cytoskeleton during platelet activation.Rapid regulation by phosphorylation results in changes in the rate of platelet activation,whereas calpain-dependent proteolysis and interaction with the cytoskeleton appears to regulate later events such as clot retraction.In hypertension and diabetes,PMCA expression is upregulated while activity is decreased, presumably due to tyrosine phosphorylation.Clearly,a more complete understanding of PMCA function in human platelets could result in the identification of new ways to control platelet function in disease states. 展开更多
关键词 Plasma membrane Ca2+-ATPase Human PLATELETS Ca2+transport Signaling CYTOSKELETON phos- phorylation PDZ domain
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CREB丝氨酸129位点磷酸化提高miR-132的水平
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作者 王翔 胡家劭 《现代医药卫生》 2016年第20期3125-3127,共3页
目的通过磷酸化的环磷酸腺苷效应元件结合蛋白(CREB)的激活,使表达记忆的相关蛋白获得长时记忆,探讨CREB丝氨酸(Ser)129位点的磷酸化对微小RNA-132(miR-132)的影响。方法采用长时程增强作用(LTP)电刺激,尾静脉注射方法给予糖原合成酶激... 目的通过磷酸化的环磷酸腺苷效应元件结合蛋白(CREB)的激活,使表达记忆的相关蛋白获得长时记忆,探讨CREB丝氨酸(Ser)129位点的磷酸化对微小RNA-132(miR-132)的影响。方法采用长时程增强作用(LTP)电刺激,尾静脉注射方法给予糖原合成酶激酶3β抑制剂SB216763,应用蛋白质印迹法检测大鼠脑内海马区CREB的磷酸化水平,逆转录-聚合酶链反应检测miR-132的表达情况。结果高频刺激CA3-CA1神经环路可成功诱导LTP,使大鼠海马的CREB Ser129位点的磷酸化水平和miR-132的表达明显升高;SB216763可抑制糖原合成酶激酶3β的活性,从而抑制CREB Ser129的磷酸化,使LTP的斜率增幅明显降低,CREB Ser129的磷酸化水平及miR-132的表达明显降低。结论CREB Ser129位点的磷酸化通过调节miR-132的表达促进LTP形成,LTP形成过程中CREB Ser129位点的磷酸化可调节miR-132的表达,从而影响长期记忆形成。 展开更多
关键词 CAMP反应元件结合蛋白质 微RNAs 蛋白质丝氨酸苏氨酸激酶 磷酸转移酶类 糖原合成酶激酶3 长时程增强 电位测定法 记忆
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Synthesis of dimeric estradiol enzyme model containing imidazolyl and study on its catalytic efficiency in hydrolysis of carboxylates and phosphates
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作者 Yan, JM Xie, RG +2 位作者 Zhao, HM Wu, DX Xia, PF 《Chinese Journal of Chemistry》 SCIE CAS CSCD 1997年第5期438-442,共5页
Dimeric estradiol enzyme model (2) was synthesized by etherification of 2,4-bis(N-imidazolylmethyl)-17β-estradiol (1) with 1,3-dibromopropane in the presence of anhydrous K2CO3. Hydrolysis of carboxylates and phospha... Dimeric estradiol enzyme model (2) was synthesized by etherification of 2,4-bis(N-imidazolylmethyl)-17β-estradiol (1) with 1,3-dibromopropane in the presence of anhydrous K2CO3. Hydrolysis of carboxylates and phosphates catalyzed by the model showed Michaelis-Menten kinetic behavior. Hydrophobic interaction between the model and ester accelerates the hydrolysis markedly, rate enhancement of up to 65 and 285 fold, relative to imidazole, is observed. 展开更多
关键词 DIMERIC estrogen enzyme model compound catalytic HYDROLYSIS carboxylate phos- phate
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