期刊文献+

氢化酶的结构、催化机理及其应用 被引量:2

The Structure,Catalytic Mechanism and the Applications of Hydrogenase
下载PDF
导出
摘要 氢化酶既是生物制氢产业的研究热点,又是微生物代谢的关键酶。阐述了氢化酶的分类和特点,主要介绍了[Ni-Fe]和[Fe-Fe]氢化酶的活性中心结构、催化产氢机理以及氢化酶的利用价值。最后对氢化酶的研究进行了展望。 Hydrogenase is the key enzyme and plays an important role in the process of biohydrogen production,which is an interesting topic in this research field.In the paper,the classification of hydrogenase was described.Reports of the applications of hydrogenase crystal structure and active site structure of the two main kinds of hydrogenases,[Ni-Fe],[Fe-Fe].Moreover,some new approach and direction for hydorgenases were indicated.
作者 张岩 李秀艳
出处 《上海化工》 CAS 2011年第3期6-9,共4页 Shanghai Chemical Industry
基金 上海市自然科学基金(10ZR1409900) 上海市城市化生态过程与生态恢复重点实验室开放基金(44502717) 污染控制与资源化研究国家重点实验室开放课题资助(PCRRF10007)
关键词 氢化酶 活性中心 催化机理 生物制氢 化学模拟 Hydrogenase Active site structure Catalytic mechanism Biohydrogen production Chemical mimic
  • 相关文献

参考文献18

二级参考文献142

  • 1任南琪,李永峰,郑国香,林海龙,张蕊.生物制氢:Ⅰ.理论研究进展[J].地球科学进展,2004,19(S1):537-541. 被引量:12
  • 2刘晶晶,龙敏南.氢酶结构及催化机理研究进展[J].生物工程学报,2005,21(3):348-353. 被引量:5
  • 3冉春秋,张卫,虞星炬,金美芳,邓麦村.解偶联剂CCCP对莱茵衣藻光照产氢过程的调控[J].高等学校化学学报,2006,27(1):62-66. 被引量:11
  • 4[1]Frey M.Hydrogenases:hydrogen-actlvating enzymes[J].Chembiochem,2002,3:153-160.
  • 5[2]Holm R H,Kennepohl P,Solomon E I.Structral and functional aspects of metal sites in biology[J].Chem.Rev,1996,96:2239-2314.
  • 6[3]Peters J W.The Structure and Mechanism of Iron-hydrogenase[J].Curr.Opin.Struct.Biol,1999,9:670-676.
  • 7[4]Tye J W,Hall M B,Darensbourg M Y.Better than platinum? Fuel cells energized by enymes[J].PNAS,2005,102:16911-16912.
  • 8[5]Evans D J,Pickett CJ.Chemistry and the hydrogenases[J].Chem.Soc.Rev,2003,32:268-275.
  • 9[6]Best S P.Spectroelectrochemistry of hydrogenase enzymes and related comounds[J].Coord.Chem.Rev,2005,249:1536-1554.
  • 10[7]Liu X,lbrahim S K,Tard C,Pickett C J.Iron-only hydrogenase:Synthetic,structural and reactivity studies of model compound[J].Coord.Chem.Rev,2005,249:1641-1652.

共引文献24

同被引文献22

  • 1李中岳.螺旋藻的开发利用[J].生物学杂志,1994,6(1):22-24. 被引量:8
  • 2张晓辉,Yoshihiro Shiraiwa,隋正红,张学成.hoxY基因的克隆及其在节旋藻和螺旋藻系统学研究中的应用[J].中国海洋大学学报(自然科学版),2005,35(6):1021-1025. 被引量:3
  • 3邰丽华,于涛,张晓嵘,安伟,栗淑媛,乔辰.螺旋藻基因组DNA制备方法的摸索与比较[J].科学技术与工程,2007,7(22):5755-5758. 被引量:5
  • 4Antal T K, Krendeleva T E, Rubin A B. Acclimation of green algae to sulfur deficiency: underlying mechanisms and application forhydrogen production [ J ]. Appl Microbiol Biotechnol, 2011,89( 1 ) :3 - 15.
  • 5Mells A, Zhang L P, Forestier M, et al. Sustained photobiological hydrogen gas production upon reversible inactivation of oxygen evolutionin the green alga Chlamydomonas reinhardtii [ J ]. Plant Physiology, 2000, 122(1) :127 - 136.
  • 6Kruse O, Rupprecht J, Bader K P, et al. Improved photobiological H2 Production in Engineered Green AlgalCells [ J ]. J Biol Chem , 2005,280 (40) : 34170 - 34177.
  • 7Ghirardi M L, Dubini A, Yu J, et al. Photobiological hydrogen - producing systems [ J ]. Chem Soc Rev,2009, 38(1) :52-61.
  • 8郭宝江,唐攻.用于工业化生产的微藻-螺旋藻.[M]∥陈峰,姜悦.微藻乍物技术.北京:中国轻工业出版社,1999:103-138.
  • 9Vanshak A. spirulina platensis ( arthrospira ) : physiology, Cellbiology and bio technology [ M ]. London: Taylor and Francis Ltd, 1997 : 175-204.
  • 10Kentemich T, Bahnweg M, Mayer F, et al. Localization of the re- versible hydrogenase in cyanobacteria [ J ]. Z Naturforsch, 1989 ;44C :384-391.

引证文献2

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部