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   575篇
  免费   61篇
  2022年   5篇
  2021年   4篇
  2019年   4篇
  2018年   13篇
  2017年   6篇
  2016年   12篇
  2015年   16篇
  2014年   12篇
  2013年   22篇
  2012年   23篇
  2011年   25篇
  2010年   15篇
  2009年   19篇
  2008年   18篇
  2007年   24篇
  2006年   23篇
  2005年   19篇
  2004年   22篇
  2003年   15篇
  2002年   26篇
  2001年   18篇
  2000年   20篇
  1999年   14篇
  1998年   12篇
  1997年   8篇
  1996年   6篇
  1995年   5篇
  1994年   15篇
  1993年   5篇
  1992年   8篇
  1991年   16篇
  1990年   15篇
  1989年   7篇
  1988年   14篇
  1987年   10篇
  1986年   9篇
  1985年   5篇
  1984年   8篇
  1982年   5篇
  1981年   5篇
  1979年   4篇
  1978年   12篇
  1977年   4篇
  1972年   6篇
  1971年   4篇
  1970年   4篇
  1969年   7篇
  1968年   5篇
  1967年   7篇
  1957年   3篇
排序方式: 共有636条查询结果,搜索用时 15 毫秒
81.
To examine whether the 200-kDa neurofilament protein (200K NFP) is involved in mechanically stabilizing axons, we studied the developmental appearance of immunoreactivity to nonphosphorylated and phosphorylated 200K NFP at the neuromuscular junction. Polyinnervated rat muscle fibers become singly innervated during the first 3 weeks of postnatal life through the process of synapse elimination. If production or post-translational modification of the 200K NFP is actively involved in imparting mechanical stability on neuromuscular synapses, then the selective presence of this protein in only one of several axons at each developing end plate region might make that one axon selectively resistant to elimination. The remaining axons would then be eliminated. Immunoreactivity to the 200K NFP is present on Gestational Day 14 and can be seen in more than one preterminal axon in the end plate region of a muscle fiber during the period of synapse elimination. These results suggest that the 200K NFP is present and phosphorylated early in development and, although the 200K NFP may increase the mechanical stability of axons, this increased stability does not determine the final outcome of synapse elimination.  相似文献   
82.
83.
84.
A pentapeptide, Z-Gly-Gly-Phe-Phe-Ala · OH (1b) and the corresponding unsaturated pentapeptide, Z-Gly-Gly-Phe-ΔZPhe-Ala · OH (1a), have been synthesized. The saturated compound (1b) was rapidly hydrolyzed by both chymotrypsin and thermolysin to the expected products, but the dehydropeptide was completely unhydrolyzed by either enzyme even after thirty hours. A new method of peptide stabilization to enzymolysis is made available.  相似文献   
85.
86.
87.
88.
A Filosa  Y Wang  A A Ismail  A M English 《Biochemistry》2001,40(28):8256-8263
The sequential unfolding events of horse, cow, and tuna ferricytochromes c (cyt c) as a function of increasing temperature over the range 25-81 degrees C were investigated by resolution-enhanced two-dimensional infrared (2D IR) correlation spectroscopy. The 2D IR analysis revealed that in the thermal denaturation of the two mammalian cyts, the overall sequence of unfolding is similar, with denaturation of extended-chain and turn structures occurring prior to unfolding of alpha-helices, followed by denaturation of residual stable extended-chain structures. In tuna cyt c, denaturation of all extended-chain structures precedes the unfolding of alpha-helices. Moreover, in cow cyt c, unfolding of all helical components occurs as one cooperative unit, but in horse and tuna cyts c, the helical components behave as subdomains that unfold separately, as proposed recently by Englander and co-workers for horse cyt c [Bai et al. (1995) Science 269, 192-197; Milne et al. (1999) J. Mol. Biol. 290, 811-822]. At higher temperatures, following the loss of secondary structure, protein aggregation occurs in the three cyts c. The data presented here establish that variations in the thermal unfolding of cyts c can be associated with specific sites in the protein that influence local flexibility yet have little affect on global stability. This study demonstrates the power of resolution-enhanced 2D IR correlation spectroscopy in probing unfolding events in homologous proteins.  相似文献   
89.
90.
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