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   332910篇
  免费   37259篇
  国内免费   188篇
  2018年   2854篇
  2017年   2715篇
  2016年   3892篇
  2015年   5349篇
  2014年   6265篇
  2013年   8831篇
  2012年   10045篇
  2011年   10018篇
  2010年   6836篇
  2009年   6171篇
  2008年   8917篇
  2007年   9347篇
  2006年   8657篇
  2005年   8330篇
  2004年   8044篇
  2003年   7806篇
  2002年   7813篇
  2001年   18163篇
  2000年   18394篇
  1999年   14131篇
  1998年   4252篇
  1997年   4509篇
  1996年   4166篇
  1995年   4005篇
  1994年   3946篇
  1993年   3782篇
  1992年   11489篇
  1991年   11132篇
  1990年   10682篇
  1989年   10247篇
  1988年   9478篇
  1987年   8844篇
  1986年   8091篇
  1985年   7961篇
  1984年   6399篇
  1983年   5571篇
  1982年   4106篇
  1981年   3599篇
  1980年   3362篇
  1979年   6118篇
  1978年   4569篇
  1977年   4126篇
  1976年   3762篇
  1975年   4329篇
  1974年   4505篇
  1973年   4394篇
  1972年   4094篇
  1971年   3501篇
  1970年   3170篇
  1969年   2968篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
991.
The effects of certain physicochemical parameters on the formation and stability of a complex between Streptomyces proteinaceous metalloprotease inhibitor (SMPI) and thermolysin were investigated. SMPI had its lowest Ki value at a pH of around 6.5 (similar to the pH dependence of the kcat/K(m) of thermolysin catalysis), reflecting the splitting mechanism of the SMPI inhibition of thermolysin. This Ki increased with an increase in pressure, and in (Ki-1) was almost linear with respect to pressure. The volume of the reaction (delta Vcomp), which is the volume change accompanying enzyme-inhibitor complex formation, was calculated as +8.1 +/- 0.3 mL.mol-1, which has a sign opposite to delta Vcomp for neutral peptide inhibitors and acyl-peptide substrates. The temperature dependence of Ki-1 gave the reaction enthalpy (delta Hcomp) and reaction entropy (delta Scomp) of the complex formation as 34.6 +/- 1.4 kJ.mol-1 and 298 +/- 5 J.mol-1.K-1, respectively. These positive reaction volumes and reaction entropies were related to the electrostatic interactions and ionic strength dependence of Ki which corresponded to the key ionic interaction during complex formation. Complex formation with SMPI stabilized thermolysin against pressure perturbation as observed by the changes in the Trp fluorescence of thermolysin with increasing pressure. Thermal stability, however, was affected very little by complex formation with SMPI. Phosphoramidon, Cbz-Phe-Gly-NH2 and Cbz-Phe also positively affected the pressure-tolerance of thermolysin, in the following order: Cbz-Gly-Phe-NH2 < Cbz-Phe < phosphoramidon. The third compound exhibited stabilizing effects comparable with those of SMPI, which suggests that the interaction between SMPI and thermolysin was localized to the reactive site.  相似文献   
992.
993.
994.
995.
996.
997.
998.
999.
New mutations in the pRM promoter of bacteriophage lambda   总被引:1,自引:0,他引:1  
G N Gussin  S Brown  J Ferm  K Matz 《Gene》1987,54(2-3):291-297
  相似文献   
1000.
Recently, Knappe and co-workers [Knappe, J., Neugebauer, F. A., Blaschkowski, H. P., & Ganzler, M. (1984) Proc. Natl. Acad. Sci. U.S.A. 81, 1332] have shown that the catalytically active form of pyruvate formate-lyase from Escherichia coli is associated with a protein-bound organic free radical which is quenched upon enzyme inactivation by oxygen or hypophosphite. Our interest in the chemical mechanism of this unusual enzymatic reaction has led us to investigate several key aspects of the inactivation of the lyase by hypophosphite and its relationship to the normal enzymatic reaction. We report here that the inactivation of both the free and acetylated forms of the lyase is subject to a primary kinetic isotope effect using [2H2]hypophosphite. This suggests that phosphorus-hydrogen bond cleavage is at least partially rate limiting during inactivation. In addition, the inactivated enzyme can be fully reactivated. We have also determined a Vmax/Km isotope effect of 3.6 +/- 0.7 for pyruvate formation from [2H]formate and acetyl coenzyme A. Thus, carbon-hydrogen bond cleavage is partially rate limiting in the normal reverse reaction. On the basis of our findings, the previous work of Knappe and co-workers, the likelihood that hypophosphite is a formate analogue, the known susceptibility of both hypophosphite and formate to homolysis, and a chemical precedent for homolytic cleavage of pyruvate, we offer a preliminary mechanistic proposal for the lyase reaction.  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