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14篇 您的检索式:作者名="Gotor C"
    题名 作者 年代 出处 被引量
1Mitochondrial Sulfide Detoxification Requires a Functional Isoform O-Acetylserine(thiol)lyase C in Arabidopsis thaliana显示文摘在 non-cyanogenic 种类,氰化物的主要来源源于乙烯和 camalexin biosyntheses。在线粒体,氰化物是细胞色素 c oxidase 的一个有势力禁止者并且被 -cyanoalanine synthase CYS-C1 使产生代射变化,催化到氢硫化物和 -cyanoalanine 的半胱氨酸和氰化物的变换。释放的氢硫化物也禁止细胞色素 c oxidase 并且需要被 O-acetylserine (thiol ) lyase mitochondrial isoform 除去, OAS-C,催化硫化物的加入到 O-acetylserine 生产半胱氨酸,因此在线粒体产生一条周期的小径。功能的 OAS-C isoforms 的损失引起 phenotypic 很类似于 CYS-C1 酶的损失的特征,显示出在根头发形成的缺点。有 OAS-C 基因的基因互补救根头发延伸的缺陷,恢复野类型的显型。线粒体妥协他们适当地除去的能力氰化物和产生硫化物因为后者不能在 oas-c 0 异种重新吸收进半胱氨酸。因而,我们观察硫化物和氰化物并且其他的 oxidase 的累积,它是不能的由于两个有毒的分子的累积可能阻止反应的氧种类的生产。我们的结果允许我们建议 OAS-C 的意义在线粒体与它在合适的硫化物和氰化物 detoxification 的角色有关。Consolacien Alvarez Irene Garcia Luis C Romero Cecilia Gotor 2012Molecular Plant2012,5,6:2
2Spark plasma sintering of Ti x Ta 1? x C 0.5 N 0.5 -based cermets: Effects of processing conditions on chemistry, microstructure and mechanical properties显示文摘José M. Córdoba Ernesto Chicardi Rosalía Poyato Francisco J. Gotor Valentina Medri Stefano Guicciardi Cesare Melandri 2013Chemical Engineering Journal2013,,:1
3Chemoenzymatic syntheses of polyamines and teraazamacrocycles显示文摘Rubi M Astorga C Gotor V 2002Synth Commun2002,32,:1
4Isolation and analysis of the soybean SGA2 gene(cDNA),encoding a new member of the plant G-protein family of signal transducers显示文摘 1996Plant Mol Biol1996,32,:1
5Implications of cysteine metabolism in the heavy metal response in Tri- choderma harzianum and in three Fusarium species 显示文摘Raspanti E Caeciola S O Gotor C 2009Chemosphere2009,4854,:1
6Liquid-phase sintering of Ti(C,N)-based cermets:The effects of binder nature and content on the solubility and wettability of hard ceramic phases显示文摘Córdoba J M Chicardi E Gotor F J 2013Journal of Alloys Compounds2013,559,:1
7- hydrogenases in green algae: photo-fermentation and hydro- gen evolution under sulfur deprivation显示文摘WINKLER M HEMSCHEMEIER A GOTOR C 2002International Jour- nal of Hydrogen Energy2002,27,1112:1
8Im- plications of cysteine metabolism in the heavy metal re- sponse in Trichoderma harzianum and in three Fusarium species 显示文摘RASPANTI E CACCIOLA S O GOTOR C 2009Chemosphere2009,76,1:1
9- hydrogenases in green algae: photo-fermentation and hydrogen evolution under sulfur deprivation 显示文摘Winkler M Hemschemeier A Gotor C Melis A Happe T 2002Int J Hydrogen Energ2002,27,:1
10Glutathione biosynthesis in Arabidopsis triehome cells显示文摘GUTIERREZ-ALCALA G GOTOR C MEYER A J FRICKER M VEGA J M ROMERO L C 2000Proceedings of the National Academy of Sciences2000,97,11:1
11-hydrogenases in green algae: photo-fermentation and hydrogen evolution under sulfur deprivation显示文摘Winkler M Hemschemeier A Gotor C 2002Int J Hydrogen Energy2002,27,:1
12Analysis of three tissue-specific elements from the wheat Cab-I enhancer显示文摘GOTOR C ROMERO L C INOUYE K 1993The Plant Journal1993,3,4:1
13Fe-hydroge-nases in green algae:photo-fermentation and hydrogen evolution under sulfur deprivation显示文摘Winkler M Hemschemeier A Gotor C 2002International Journal of Hydrogen Energy2002,27,1112:1
14Combustion synthesis of TiN induced by high-energy ball milling of Ti under nitrogen atmosphere 显示文摘GOTOR F J ALCALA M D REAL C 2002J Mater Res2002,17,7:1
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