在37℃、pH =9.4、40 mmol/L的巴比妥钠-盐酸缓冲体系中,利用微量热法研究了稀土离子镧对牛肝精氨酸酶催化L-精氨酸水解反应的影响.实验结果表明,镧离子对精氨酸酶催化反应存在着明显的抑制作用,其抑制类型为非竞争性可逆抑制,求得抑制常数K1为2.74×10-4mol/L.根据其抑制类型和离子半径,推测镧离子与精氨酸酶的结合位置远离酶的活性中心.
参考文献
[1] | Wu G,Morris S M.Arginine Metabolism:Nitric Oxide and Beyond[J].Biochem J,1998,336:1-17. |
[2] | Herzfeld A,Raper S M.The Heterogeneity of Arginases in Rat Tissues[J].Biochem J,1976,153:469-478. |
[3] | Morris S M.Regulation of Enzymes of the Urea Cycle and Arginine Metabolism[J].Annu Rev Nutr,2002,22:87-105. |
[4] | Morris S M,Bhamidipati D,Kepka-Lenhart D.Human Type Ⅱ Arginase:Sequence Analysis and Tissue-specific Expression[J].Gene,1997,193:157-161. |
[5] | Cama E,Colleluori D M,Emig F A,et al.Human Arginase Ⅱ:Crystal Structure and Physiological Role in Male and Female[J].Biochemistry,2003,42:8445-8451. |
[6] | Christianson D W.Arginase:Structure,Mechanism,and Physiological Role in Male and Female Sexual Arousal[J].Acc Chem Res,2005,38(3):191-201. |
[7] | Sossong T M,Khangulov S V,Cavalli R C,et al.Catalysis on Dinuclear Mn (Ⅱ) Centers:Hydrolytic and Redox Activities of Rat Liver Arginase[J].J Bio Inorg Chem,1997,2(4):433-443. |
[8] | Khangulov S V,Sossong T M,Ash D E,et al.L-Arginine Binding to Liver Arginase Requires Proton Transfer to Gateway Residue His141 and Coordination of the Guanidinium Group to the Dimanganese(Ⅱ,Ⅱ) Center[J].Biochemistry,1998,37:8539-8550. |
[9] | Baggio R,Elbaum D,Kanyo Z F,et al.Inhibition of Mn2+ 2-Arginase by Borate Leads to the Design of a Transition State Analogue Inhibitor,2 (S)-Amino-6-boronohexanoic Acid[J].J Am Chem Soc,1997,119(34):8107-8108. |
[10] | Custot J,Moali C,Brollo M,et al.The New α-Amino Acid N-Hydroxy-nor-L-arginine:a High-affinity Inhibitor of Arginase Well Adapted to Bind to Its Manganese Cluster[J].J Am Chem Soc,1997,119(17):4086-4087. |
[11] | Tormanen C D.The Effect of Metal Ions on Arginase from the Zebra Mussel Dreissena Polymorpba[J].J Inorg Biochem,1997,66:111-118. |
[12] | CAO Yongfan,ZHANG Dongyan,WANG Li,et al.Effect of Rare Earth on the Activity of Cellulase[J].J Inner Mongolia Univ Technol,2010,29 (2):104-106 (in Chinese).曹永范,张冬艳,王丽,等.稀土离子对纤维素酶活性的影响[J].内蒙古工业大学学报,2010,29(2):104-106. |
[13] | CHEN Fu,YANG Guishan,CAO Hui,et al.The ED50 Values for Assessing Lanthanum Toxicity on Microbial ATP Content and Dehydrogenase and Urease Activities of Paddy Soil[J].Chinese J Inorg Chem,2002,18 (8):827-832 (in Chinese).陈浮,杨桂山,曹慧,等.土壤微生物ATP、脱氢酶和尿素酶活性的ED50值评价外源镧的生物毒性[J].无机化学学报,2002,18(8):827-832. |
[14] | MU Kangguo,ZHANG Fusuo,HU Lin,et al.Toxicity of Lanthanum on Rhizoctonia Solani and Its Effect on Pathogenic Enzyme[J].J Chinese Rare Earth Soc,2004,22(1):149-152(in Chinese).慕康国,张福锁,胡林,等.镧对Rhizoctonia solani的毒力及其致病酶活性的影响[J].中国稀土学报,2004,22(1):149-152. |
[15] | Pethe S,Boucher J L,Mansuy D.Interaction of Anions with Rat Liver Arginase:Specific Inhibitory Effects of Fluoride[J].J Inorg Biochem,2002,88 (3/4):397-402. |
[16] | Liang Y,Qu S S,Wang C X,et al.An On-line Calorimetric Study of the Dismutation of Superoxide Anion Catalyzed by SOD in Batch Reactors[J].Chem Eng Sci,2000,55:6071-6078. |
[17] | LIANG Yi,WANG Cunxin,WU Dingquan,et al.Microcalorimetry Applied to the Study of Product Inhibition of Singlesubstrate Enzyme-catalyzed Reactions[J].Acta Chim Sin,1996,54 (1):38-44 (in Chinese).梁毅,汪存信,吴鼎泉,等.微量热法研究单底物酶促反应的产物抑制作用[J].化学学报,1996,54(1):38-44. |
[18] | Xie X Y,Wang C X,Wang Z Y.Microcalorimetric Studies on the Product Inhibition of Hydrolysis of L-Arginine Catalyzed by Bovine Liver Arginase[J].J Therm Anal Calorim,2004,76(1):275-284. |
[19] | Liang Y,Wang C X,Wu D Q,et al.Thermokinetic Studies of the Product Inhibition of Single-substrate,Enzyme-catalyzed Reactions[J].Thermochim Acta,1995,268:27-35. |
[20] | ZOU Guolin,ZHU Rufan.Enzymology[M].Wuhan:Wuhan University Publishing House,1997:95-108 (in Chinese).邹国林,朱汝璠.酶学[M].武汉:武汉大学出版社,1997:95-108. |
[21] | Christianson D W,Cox J D.Catalysis by Metal-activated Hydroxide in Zinc and Manganese Metalloenzymes[J].Annu Rev Biochem,1999,68:33-57. |
[22] | Xie X Y,Li X,Wang Z Y,et al.Thermokinetic Studies on the Activation of Bovine Liver Arginase by Manganese Ions[J].Thermochim Acta,2004,414(1):19-23. |
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