Kim N N, Cox J D, Baggio R F, Emig F A, Mistry S K, Harper S L, Speicher D W, Morris S M, Ash D E, Traish A, Christianson D W
Department of Urology, Boston University School of Medicine, 700 Albany Street, Boston, Massachusetts 02118, USA.
Biochemistry. 2001 Mar 6;40(9):2678-88. doi: 10.1021/bi002317h.
The boronic acid-based arginine analogue S-(2-boronoethyl)-L-cysteine (BEC) has been synthesized and assayed as a slow-binding competitive inhibitor of the binuclear manganese metalloenzyme arginase. Kinetic measurements indicate a K(I) value of 0.4-0.6 microM, which is in reasonable agreement with the dissociation constant of 2.22 microM measured by isothermal titration calorimetry. The X-ray crystal structure of the arginase-BEC complex has been determined at 2.3 A resolution from crystals perfectly twinned by hemihedry. The structure of the complex reveals that the boronic acid moiety undergoes nucleophilic attack by metal-bridging hydroxide ion to yield a tetrahedral boronate anion that bridges the binuclear manganese cluster, thereby mimicking the tetrahedral intermediate (and its flanking transition states) in the arginine hydrolysis reaction. Accordingly, the binding mode of BEC is consistent with the structure-based mechanism proposed for arginase as outlined in Cox et al. [Cox, J. D., Cama, E., Colleluori D. M., Pethe, S., Boucher, J. S., Mansuy, D., Ash, D. E., and Christianson, D. W. (2001) Biochemistry 40, 2689-2701.]. Since BEC does not inhibit nitric oxide synthase, BEC serves as a valuable reagent to probe the physiological relationship between arginase and nitric oxide (NO) synthase in regulating the NO-dependent smooth muscle relaxation in human penile corpus cavernosum tissue that is required for erection. Consequently, we demonstrate that arginase is present in human penile corpus cavernosum tissue, and that the arginase inhibitor BEC causes significant enhancement of NO-dependent smooth muscle relaxation in this tissue. Therefore, human penile arginase is a potential target for the treatment of sexual dysfunction in the male.
基于硼酸的精氨酸类似物S-(2-硼乙基)-L-半胱氨酸(BEC)已被合成,并作为双核锰金属酶精氨酸酶的慢结合竞争性抑制剂进行了测定。动力学测量表明其抑制常数(K(I))值为0.4 - 0.6微摩尔,这与通过等温滴定量热法测得的2.22微摩尔的解离常数合理相符。精氨酸酶 - BEC复合物的X射线晶体结构已通过半面完全孪晶的晶体在2.3埃分辨率下确定。复合物的结构表明,硼酸部分受到金属桥连氢氧根离子的亲核攻击,生成一个桥连双核锰簇的四面体硼酸根阴离子,从而模拟精氨酸水解反应中的四面体中间体(及其侧翼过渡态)。因此,BEC的结合模式与Cox等人[Cox, J. D., Cama, E., Colleluori D. M., Pethe, S., Boucher, J. S., Mansuy, D., Ash, D. E., and Christianson, D. W. (2001) Biochemistry 40, 2689 - 2701.]提出的基于结构的精氨酸酶作用机制一致。由于BEC不抑制一氧化氮合酶,BEC可作为一种有价值的试剂,用于探究精氨酸酶与一氧化氮(NO)合酶在调节人类阴茎海绵体组织中勃起所需的NO依赖性平滑肌舒张方面的生理关系。因此,我们证明精氨酸酶存在于人类阴茎海绵体组织中,并且精氨酸酶抑制剂BEC可导致该组织中NO依赖性平滑肌舒张显著增强。所以,人类阴茎精氨酸酶是治疗男性性功能障碍的潜在靶点。