首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   579篇
  免费   63篇
  国内免费   49篇
  2023年   7篇
  2022年   13篇
  2021年   17篇
  2020年   22篇
  2019年   24篇
  2018年   14篇
  2017年   19篇
  2016年   7篇
  2015年   24篇
  2014年   43篇
  2013年   37篇
  2012年   52篇
  2011年   63篇
  2010年   70篇
  2009年   20篇
  2008年   16篇
  2007年   20篇
  2006年   24篇
  2005年   18篇
  2004年   17篇
  2003年   12篇
  2002年   20篇
  2001年   9篇
  2000年   12篇
  1999年   8篇
  1998年   7篇
  1997年   5篇
  1996年   12篇
  1995年   5篇
  1994年   5篇
  1993年   3篇
  1992年   3篇
  1991年   3篇
  1990年   3篇
  1989年   8篇
  1988年   3篇
  1986年   3篇
  1984年   2篇
  1982年   3篇
  1981年   2篇
  1980年   3篇
  1979年   6篇
  1978年   3篇
  1977年   3篇
  1976年   6篇
  1975年   3篇
  1974年   2篇
  1972年   5篇
  1971年   2篇
  1967年   1篇
排序方式: 共有691条查询结果,搜索用时 15 毫秒
81.
The membrane skeleton plays a central role in maintaining the elasticity and stability of the erythrocyte membrane, two biophysical features critical for optimal functioning and survival of red cells. Many constituent proteins of the membrane skeleton are phosphorylated by various kinases, and phosphorylation of β-spectrin by casein kinase and of protein 4.1R by PKC has been documented to modulate erythrocyte membrane mechanical stability. In this study, we show that activation of endogenous PKA by cAMP decreases membrane mechanical stability and that this effect is mediated primarily by phosphorylation of dematin. Co-sedimentation assay showed that dematin facilitated interaction between spectrin and F-actin, and phosphorylation of dematin by PKA markedly diminished this activity. Quartz crystal microbalance measurement revealed that purified dematin specifically bound the tail region of the spectrin dimer in a saturable manner with a submicromolar affinity. Pulldown assay using recombinant spectrin fragments showed that dematin, but not phospho-dematin, bound to the tail region of the spectrin dimer. These findings imply that dematin contributes to the maintenance of erythrocyte membrane mechanical stability by facilitating spectrin-actin interaction and that phosphorylation of dematin by PKA can modulate these effects. In this study, we have uncovered a novel functional role for dematin in regulating erythrocyte membrane function.  相似文献   
82.
Kim SM  Kim SY  Kim SH  Cho KW  Kim SZ 《Peptides》2012,33(1):59-66
Dendroaspis natriuretic peptide (DNP) is one of four members of the natriuretic peptide family sharing functional and structural properties. The purpose of the present study was to elucidate the physiological role of DNP on renal functions and its cellular mechanism in the rabbit kidney. DNP (5 μg/kg/min) infused intravenously increased urine volume and urinary excretion of electrolytes. These renal actions induced by DNP were more pronounced than those caused by atrial natriuretic peptide (ANP). We compared profiles of (125)I-ANP and (125)I-DNP by reverse-phase HPLC during incubation in rabbit plasma at 37°C for 1, 2, and 4h. While (125)I-ANP was quickly degraded within 1h, (125)I-DNP was still stable in plasma for 4h. DNP induced the greatest cyclic guanosine monophosphate (cGMP) production in the glomeruli in a dose-dependent manner, when compared to other renal structures including cortical tubules, outer medullary tubules, and inner medullary tubules. Affinity cross-linking analysis revealed NPR-A is selective receptor for DNP in glomeruli. Forskolin, a stimulator of adenylyl cyclase, significantly decreased cGMP production in the renal glomeruli but not in the renal medulla. In summary, DNP is a more effective activator of renal functions than ANP, possibly because of the degradation resistance of DNP against the endogenous peptidases in plasma or tissues. These findings suggest that DNP plays a pivotal role as a renal regulating peptide via specific natriuretic peptide receptors with a guanylyl cyclase domain.  相似文献   
83.
Vacuolar H(+)-ATPase (V-ATPase) is a membrane-bound multisubunit enzyme complex composed of at least 14 different subunits. The complex regulates the physiological processes of a cell by controlling the acidic environment, which is necessary for certain activities and the interaction with the actin cytoskeleton through its B and C subunits in both humans and yeast. Arabidopsis V-ATPase has three B subunits (AtVAB1, AtVAB2, and AtVAB3), which share 97.27% sequence identity and have two potential actin-binding sites, indicating that these AtVABs may have crucial functions in actin cytoskeleton remodeling and plant cell development. However, their biochemical functions are poorly understood. In this study, we demonstrated that AtVABs bind to and co-localize with F-actin, bundle F-actin to form higher order structures, and stabilize actin filaments in vitro. In addition, the AtVABs also show different degrees of activities in capping the barbed ends but no nucleating activities, and these activities were not regulated by calcium. The functional similarity and differences of the AtVABs implied that they may play cooperative and distinct roles in Arabidopsis cells.  相似文献   
84.
The physiological role of DJ-1, a protein involved in familial Parkinson disease is still controversial. One of the hypotheses proposed indicates a sensor role for oxidative stress, through oxidation of a conserved cysteine residue (Cys-106). The association of DJ-1 mutations with Parkinson disease suggests a loss of function, specific to dopaminergic neurons. Under oxidative conditions, highly reactive dopamine quinones (DAQs) can be produced, which can modify cysteine residues. In cellular models, DJ-1 was found covalently modified by dopamine. We analyzed the structural modifications induced on human DJ-1 by DAQs in vitro. We described the structural perturbations induced by DAQ adduct formation on each of the three cysteine residues of DJ-1 using specific mutants. Cys-53 is the most reactive residue and forms a covalent dimer also in SH-SY5Y DJ-1-transfected cells, but modification of Cys-106 induces the most severe structural perturbations; Cys-46 is not reactive. The relevance of these covalent modifications to the several functions ascribed to DJ-1 is discussed in the context of the cell response to a dopamine-derived oxidative insult.  相似文献   
85.
microRNA(miRNA)是一种内源性的小分子RNA,长度约为21到25个核苷酸大小,在动植物生长发育的各个过程中起重要的调控作用。近几年随着高通量测序技术的飞速发展,研究人员在许多物种中鉴定了大量的miRNA,未来miRNA的研究主要集中在功能研究方面,尤其是植物miRNA在逆境条件下的功能方面。就目前miRNA功能的主要研究方法,以及逆境条件下植物miRNA的研究进行了综合阐述。  相似文献   
86.
汉坦病毒感染人类可导致肾综合征出血热和汉坦病毒肺综合征,其包膜糖蛋白(GP)是重要的结构蛋白,本文就汉坦病毒糖蛋白的结构和功能的研究进展作一综述。  相似文献   
87.
目的通过对与脑循环功能相关的12个血液动力学参数进行分析,得出能够反映脑循环总体功能的一个综合指标。方法采用病例对照方法,获得120例脑血管疾病患者和130例正常者对照的流行病学资料,年龄在20岁至70岁。综合应用主成分分析、logistic回归分析等方法得到四种综合指标计算模型,并将这四种模型在临床上通过ROC曲线进行初步检验评价。结果在对原始计算数据250例人群的检验中,四个综合指标的ROC曲线下面积分别为0.905、0.901、0.942、0.911。在临床上对另外的年龄为20岁至70岁的775例人群的检验中,四个综合指标的ROC曲线下面积分别为0.943、0.940、0.969和0.945;在对年龄为50岁至60岁的144例人群的检验中,四个综合指标的ROC曲线下面积分别为0.866、0.862、0.935和0.847。讨论对12个参数进行主成分回归后选取前三个主成分进行logistic回归分析后得到的评价模型作为反应脑循环总体功能的综合指标具有较佳的评价能力与更好的稳定性。  相似文献   
88.
Rab7是一个GTP结合蛋白,隶属于Rab家族,该家族在调控膜泡的运输、结合以及细胞内膜结构的组织中行使重要作用。本实验通过RT-PCR技术从盐敏感水稻品种‘日本晴’(‘Nipponbare’)获得了OsRab7基因全长序列,成功构建了原核表达载体pET-32a-OsRab7。在IPTG诱导下,该蛋白高效表达,并明显缓解了高盐环境(4.5% ~8.5% NaCl)对大肠杆菌的生长胁迫。为进一步研究该基因的功能,将OsRab7在大肠杆菌中的表达蛋白纯化,并利用p1301B(pCAMBIA1301改造载体)构建了植物表达载体,成功转化来源于水稻株系‘中花11’(盐敏感)的愈伤组织,为探讨其在水稻中的表达模式和功能分析及应用于水稻耐盐品种的改良奠定了一定的基础。  相似文献   
89.
逆境相关植物锌指蛋白的研究进展   总被引:9,自引:0,他引:9  
锌是植物必需的营养元素,锌指蛋白因其具有指状结构特征且能结合Zn2 而得名,植物锌指蛋白包含特有的QALGGH保守结构,可能涉及调控植物特有的生物学功能。人们已经从拟南芥(Arabidopsis thaliana)、矮牵牛(Petunia hybrida Vilm)、水稻(Oryza sativa)、大豆(Glycine max)、棉花(Gossypium hirsutum)等植物中克隆了许多编码锌指蛋白的基因,并对其结构及功能进行了研究。利用转基因技术,将一些与逆境胁迫相关的锌指蛋白基因在目标植物中过量表达后,能对植物起到增强抗逆性的作用,说明锌指蛋白在增强植物逆境抗性方面有着广阔的应用前景。  相似文献   
90.
海藻糖及其在生物工程方面的应用   总被引:4,自引:0,他引:4  
自海藻糖发现以来对其化学性质、生理功能、作用机理、代谢途径等已进行了较为深入的研究,其分子生物学的研究也渐渐兴起。研究表明海藻糖能提高生物体对干旱、低温、高温、pH、盐渍等逆境条件下的抗性。离体试验表明海藻糖能保护生物膜、蛋白质的结构并能保持逆境下的酶活性,同时,外源海藻糖同样对生物体有保护作用。由于海藻糖具有这些独特的生物学功能,它已在许多方面得以应用,可作为食品工业的一种添加剂和甜味剂,使干燥食品在得水后保持原有的色、香、味;也可作为医药工业的非特异性生物制品和生化药品保护剂,使其在常温下保存,从而降低运输与储存费用;另外,在农业研究中可利用现代分子生物技术培育表达海藻糖的转基因作物,提高农作物的抗旱、抗冻等抗逆性能。  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号