Longenecker K L, Zhang B, Derewenda U, Sheffield P J, Dauter Z, Parsons J T, Zheng Y, Derewenda Z S
Department of Molecular Physiology and Biological Physics and the Department of Microbiology, University of Virginia Health System, Charlottesville, Virginia 22908-0736, USA.
J Biol Chem. 2000 Dec 8;275(49):38605-10. doi: 10.1074/jbc.M007574200.
Cellular signaling by small G-proteins is down-regulated by GTPase-activating proteins (GAPs), which increase the rate of GTP hydrolysis. The GTPase regulator associated with focal adhesion kinase (Graf) exhibits GAP activity toward the RhoA and Cdc42 GTPases, but is only weakly active toward the closely related Rac1. We determined the crystal structure of a 231-residue fragment of Graf (GrafGAP), a domain containing the GAP activity, at 2.4-A resolution. The structure clarifies the boundaries of the functional domain and yields insight to the mechanism of substrate recognition. Modeling its interaction with substrate suggested that a favorable interaction with Glu-95 of Cdc42 (Glu-97 of RhoA) would be absent with the corresponding Ala-95 of Rac1. Indeed, GrafGAP activity is diminished approximately 40-fold toward a Cdc42 E95A mutant, whereas a approximately 10-fold increase is observed for a Rac1 A95E mutant. The GrafGAP epitope that apparently interacts with Glu-95(Glu-97) contains Asn-225, which was recently found mutated in some myeloid leukemia patients. We conclude that position 95 of the GTPase is an important determinant for GrafGAP specificity in cellular function and tumor suppression.
小G蛋白的细胞信号传导受GTP酶激活蛋白(GAP)的负调控,GAP可提高GTP水解速率。与粘着斑激酶相关的GTP酶调节剂(Graf)对RhoA和Cdc42 GTP酶表现出GAP活性,但对密切相关的Rac1的活性较弱。我们测定了Graf(GrafGAP)一个含GAP活性结构域的231个残基片段的晶体结构,分辨率为2.4埃。该结构明确了功能结构域的边界,并深入了解了底物识别机制。对其与底物相互作用的建模表明,Rac1相应的Ala-95与Cdc42的Glu-95(RhoA的Glu-97)不存在有利的相互作用。事实上,GrafGAP对Cdc42 E95A突变体的活性降低了约40倍,而对Rac1 A95E突变体的活性则增加了约10倍。明显与Glu-95(Glu-97)相互作用的GrafGAP表位含有Asn-225,最近发现一些髓系白血病患者中该位点发生了突变。我们得出结论,GTP酶的95位是GrafGAP在细胞功能和肿瘤抑制中特异性的重要决定因素。