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   489943篇
  免费   51837篇
  国内免费   375篇
  542155篇
  2018年   4891篇
  2017年   4576篇
  2016年   6487篇
  2015年   9716篇
  2014年   10641篇
  2013年   14878篇
  2012年   17138篇
  2011年   16765篇
  2010年   10972篇
  2009年   9516篇
  2008年   14485篇
  2007年   14907篇
  2006年   13951篇
  2005年   13442篇
  2004年   13074篇
  2003年   12335篇
  2002年   11973篇
  2001年   20023篇
  2000年   20539篇
  1999年   16419篇
  1998年   5569篇
  1997年   5675篇
  1996年   5269篇
  1995年   5083篇
  1994年   5023篇
  1993年   4913篇
  1992年   13089篇
  1991年   12604篇
  1990年   12162篇
  1989年   11758篇
  1988年   11081篇
  1987年   10501篇
  1986年   9961篇
  1985年   10106篇
  1984年   8394篇
  1983年   7204篇
  1982年   5721篇
  1981年   5337篇
  1980年   4837篇
  1979年   8106篇
  1978年   6526篇
  1977年   5995篇
  1976年   5678篇
  1975年   6364篇
  1974年   7003篇
  1973年   6965篇
  1972年   6364篇
  1971年   5799篇
  1970年   5021篇
  1969年   4972篇
排序方式: 共有10000条查询结果,搜索用时 8 毫秒
861.
The sensitivity of the fluorescent dye, 3,3′-diethylthiadicarbocyanine (DiS-C2(5)), was too low for the detection of membrane potential changes in rat small intestinal membrane vesicles. Only after adding LaCl3 or after fractionation of the intestinal membranes by free-flow electrophoresis could the dye be used to monitor electrogenic Na+-dependent transport systems. It is concluded that the response of this potential-sensitive dye is influenced by the negative surface charge density of the vesicles.  相似文献   
862.
Dihydroxyacetone phosphate (GrnP) acyltransferase and alkyl-GrnP synthase are the key enzymes involved in the biosynthesis of ether phospholipids. Both enzymes are located on the inside of the peroxisomal membrane. Here we report evidence for a direct interaction between these enzymes obtained by the use of chemical cross-linking. After cross-linking and immunoblot analysis alkyl-GrnP synthase could be detected in a 210-kDa complex which was located entirely on the lumenal side of the peroxisomal membrane. Two-dimensional SDS/PAGE demonstrated that GrnP-acyltransferase is also cross-linked in a 210-kDa complex. Co-immunoprecipitation confirmed that the two enzymes interact, in a heterotrimeric complex. Furthermore, alkyl-GrnP synthase can form a homotrimeric complex in the absence of GrnP-acyltransferase as was demonstrated by immunoblot analysis after cross-linking experiments with either GrnP-acyltransferase deficient human fibroblast homogenates or recombinant (His)6-tagged alkyl-GrnP synthase. We conclude that alkyl-GrnP synthase interacts selectively with GrnP-acyltransferase in a heterotrimeric complex and in the absence of GrnP-acyltransferase can also form a homotrimeric complex.  相似文献   
863.
864.
The autofluorescent substance monodansylcadaverine has recently been reported as a specific in vivo marker for autophagic vacuoles. However, the mechanism for this specific labeling remained unclear. Our results reveal that the common model of ion trapping in acidic compartments cannot completely account for the observed autophagic vacuole staining. Because autophagic vacuoles are characterized by myelin-like membrane inclusions, we tested whether this lipid-rich environment is responsible for the staining properties of monodansylcadaverine. In in vitro experiments using either liposomes or solvents of different polarity, monodansylcadaverine showed an increased relative fluorescence intensity in a hydrophobic environment as well as a Stokes shift dependent on the solvent polarity. To test the effect of autophagic vacuoles or autophagic vacuole lipids on monodansylcadaverine fluorescence, we isolated autophagic vacuoles and purified autophagic vacuole lipids depleted of proteins. Entire autophagic vacuoles and autophagic vacuole lipids had the same effect on monodansylcadaverine fluorescence properties, suggesting lipids as the responsible component. Our results suggest that the in vivo fluorescence properties of monodansylcadaverine do not depend exclusively on accumulation in acidic compartments by ion trapping but also on an effective interaction of this molecule with autophagic vacuole membrane lipids. (J Histochem Cytochem 48:251-258, 2000)  相似文献   
865.
866.
867.
868.
869.
870.
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