Ma Jichun, Yoshimura Masato, Yamashita Eiki, Nakagawa Atsushi, Ito Akio, Tsukihara Tomitake
Institute for Protein Research, Osaka University, Yamadaoka 3-2, Suita, Osaka 565-0871, Japan.
J Mol Biol. 2004 Apr 16;338(1):103-14. doi: 10.1016/j.jmb.2004.02.032.
Monoamine oxidase (MAO), a mitochondrial outer membrane enzyme, catalyzes the degradation of neurotransmitters in the central nervous system and is the target for anti-depression drug design. Two subtypes of MAO, MAOA and MAOB, are similar in primary sequences but have unique substrate and inhibitor specificities. The structures of human MAOB complexed with various inhibitors were reported early. To understand the mechanisms of specific substrate and inhibitor recognitions of MAOA and MAOB, we have determined the crystal structure of rat MAOA complexed with the specific inhibitor, clorgyline, at 3.2A resolution. The comparison of the structures between MAOA and MAOB clearly explains the specificity of clorgyline for MAOA inhibition. The fitting of serotonin into the binding pockets of MAOs demonstrates that MAOB Tyr326 would block access of the 5-hydroxy group of serotonin into the enzyme. These results will lead to further understanding of the MAOA function and to new anti-depression drug design. This study also presents that MAOA has a transmembrane helix at the C-terminal region. This is the first crystal structure of membrane protein with an isolated transmembrane helix.
单胺氧化酶(MAO)是一种线粒体外膜酶,催化中枢神经系统中神经递质的降解,是抗抑郁药物设计的靶点。MAO有两种亚型,MAOA和MAOB,它们的一级序列相似,但具有独特的底物和抑制剂特异性。早期报道了与各种抑制剂复合的人MAOB的结构。为了了解MAOA和MAOB对特定底物和抑制剂的识别机制,我们已确定与特异性抑制剂氯吉兰复合的大鼠MAOA的晶体结构,分辨率为3.2埃。MAOA和MAOB结构之间的比较清楚地解释了氯吉兰对MAOA抑制的特异性。血清素在MAO结合口袋中的拟合表明,MAOB的Tyr326会阻止血清素的5-羟基进入酶中。这些结果将有助于进一步了解MAOA的功能并推动新的抗抑郁药物设计。这项研究还表明,MAOA在C末端区域有一个跨膜螺旋。这是具有孤立跨膜螺旋的膜蛋白的首个晶体结构。