No Con A receptor site was found on the intact plasma membranes of mammalian sperms before capacitation.After capacitation, however, the plasma membranes sloughed off, exposing the outer acrosomal membrane which is ri...No Con A receptor site was found on the intact plasma membranes of mammalian sperms before capacitation.After capacitation, however, the plasma membranes sloughed off, exposing the outer acrosomal membrane which is rich in Con A receptor sites.The vesicles formed during acrosome reaction were also found to bc rich in Con A receptor sites, suggesting their origin from outer acrosomal membranes.With completion of acrosome reaction, only inner acrosomal membrane was left in which no Con A receptor sites could be demonstrated.Also no Con A receptor site was found on egg plasma membrane throughout fertilization.It was thus shown that different membranes possess different properties.展开更多
Fentanyl is a potent and widely used clinical narcotic analgesic, as well as a highly selective IJ-opioid agonist. The present study established a homologous model of the human μ-opioid receptor; an intercomparison o...Fentanyl is a potent and widely used clinical narcotic analgesic, as well as a highly selective IJ-opioid agonist. The present study established a homologous model of the human μ-opioid receptor; an intercomparison of three types of μ-opioid receptor protein sequence homologous rates was made. The secondary receptor structure was predicted, the model reliability was assessed and verified using the Ramachandran plot and ProTab analysis. The predictive ability of the CoMFA model was further validated using an external test set. Using the Surflex-Dock program, a series of fentanyl analog molecules were docked to the receptor, the calculation results from Biopolymer/SitelD showed that the receptor had a deep binding area situated in the extracellular side of the transmembrane domains (TM) among TM3, TM5, TM6, and TMT. Results suggested that there might be 5 active areas in the receptor. The important residues were Asp147, Tyr148, and Tyr149 in TM3, Trp293, and His297 in TM6, and Trp318, His319, Ile322, and Tyr326 in TM7, which were located at the 5 active areas. The best fentanyl docking orientation position was the piperidine ring, which was nearly perpendicular to the membrane surface in the 7 TM domains. Molecular dynamic simulations were applied to evaluate potential relationships between ligand conformation and fentanyl substitution.展开更多
目的:探讨维生素D受体(VDR)基因FOKI位点多态性与子痫前期(PE)遗传易感性的关系。方法:计算机检索中国知网(CNKI)、万方、维普、中国生物医学文献数据库、PubMed、Web of Science中关于VDR基因FOKI位点多态性与PE易感性的病例对照研究,...目的:探讨维生素D受体(VDR)基因FOKI位点多态性与子痫前期(PE)遗传易感性的关系。方法:计算机检索中国知网(CNKI)、万方、维普、中国生物医学文献数据库、PubMed、Web of Science中关于VDR基因FOKI位点多态性与PE易感性的病例对照研究,检索时间为建库至2023年5月。在等位基因模型(f比F)、纯合比较模型(ff比FF)、杂合比较模型(Ff比FF)、显性比较模型(Ff+ff比FF)和隐性比较模型(ff比FF+Ff)5种遗传模型下,采用Stata11.0软件进行meta分析,并用OR值及95%可信区间(95%CI)评价VDR基因FOKI位点多态性与PE易感性之间的关联。结果:共纳入8篇文献,包括3446例研究对象。meta分析结果显示,在等位基因模型(f比F,OR=1.49,95%CI 1.08~2.05)、纯合比较模型(ff比FF,OR=1.80,95%CI 1.11~2.93)、隐性比较模型(ff比FF+Ff,OR=1.95,95%CI 1.39~2.73)下,VDR基因FOKI位点多态性与PE遗传易感性密切相关,而在杂合比较模型(Ff比FF)和显性比较模型(Ff+ff比FF)下,差异无统计学意义。结论:VDR基因FOKI位点可能与PE易感性有关,f等位基因和ff基因型可能是PE发生的危险因素。展开更多
文摘No Con A receptor site was found on the intact plasma membranes of mammalian sperms before capacitation.After capacitation, however, the plasma membranes sloughed off, exposing the outer acrosomal membrane which is rich in Con A receptor sites.The vesicles formed during acrosome reaction were also found to bc rich in Con A receptor sites, suggesting their origin from outer acrosomal membranes.With completion of acrosome reaction, only inner acrosomal membrane was left in which no Con A receptor sites could be demonstrated.Also no Con A receptor site was found on egg plasma membrane throughout fertilization.It was thus shown that different membranes possess different properties.
基金supported by the National Natural Science Foundation of China(Molecular design,catalysis and synthesis methods of novel fentanyl analogs active compounds)No.20872095
文摘Fentanyl is a potent and widely used clinical narcotic analgesic, as well as a highly selective IJ-opioid agonist. The present study established a homologous model of the human μ-opioid receptor; an intercomparison of three types of μ-opioid receptor protein sequence homologous rates was made. The secondary receptor structure was predicted, the model reliability was assessed and verified using the Ramachandran plot and ProTab analysis. The predictive ability of the CoMFA model was further validated using an external test set. Using the Surflex-Dock program, a series of fentanyl analog molecules were docked to the receptor, the calculation results from Biopolymer/SitelD showed that the receptor had a deep binding area situated in the extracellular side of the transmembrane domains (TM) among TM3, TM5, TM6, and TMT. Results suggested that there might be 5 active areas in the receptor. The important residues were Asp147, Tyr148, and Tyr149 in TM3, Trp293, and His297 in TM6, and Trp318, His319, Ile322, and Tyr326 in TM7, which were located at the 5 active areas. The best fentanyl docking orientation position was the piperidine ring, which was nearly perpendicular to the membrane surface in the 7 TM domains. Molecular dynamic simulations were applied to evaluate potential relationships between ligand conformation and fentanyl substitution.