Frazzetto Mark, Suphioglu Cenk, Zhu Jiuxiang, Schmidt-Kittler Oleg, Jennings Ian G, Cranmer Susan L, Jackson Shaun P, Kinzler Kenneth W, Vogelstein Bert, Thompson Philip E
Australian Centre for Blood Diseases, Monash University, Melbourne, VIC 3004, Australia.
Biochem J. 2008 Sep 15;414(3):383-90. doi: 10.1042/BJ20080512.
The last few years have seen the identification of numerous small molecules that selectively inhibit specific class I isoforms of PI3K (phosphoinositide 3-kinase), yet little has been revealed about the molecular basis for the observed selectivities. Using site-directed mutagenesis, we have investigated one of the areas postulated as being critical to the observed selectivity. The residues Thr(886) and Lys(890) of the PI3Kgamma isoform project towards the ATP-binding pocket at the entrance to the catalytic site, but are not conserved. We have made reciprocal mutations between those residues in the beta isoform (Glu(858) and Asp(862)) and those in the alpha isoform (His(855) and Gln(859)) and evaluated the potency of a range of reported PI3K inhibitors. The results show that the potencies of beta-selective inhibitors TGX221 and TGX286 are unaffected by this change. In contrast, close analogues of these compounds, particularly the alpha-isoform-selective compound (III), are markedly influenced by the point mutations. The collected data suggests two distinct binding poses for these inhibitor classes, one of which is associated with potent PI3Kbeta activity and is not associated with the mutated residues, and a second that, in accord with earlier hypotheses, does involve this pair of non-conserved amino acids at the catalytic site entrance and contributes to the alpha-isoform-selectivity of the compounds studied.
在过去几年中,人们发现了许多能够选择性抑制I类特定亚型PI3K(磷脂酰肌醇3激酶)的小分子,但对于所观察到的选择性背后的分子基础却知之甚少。我们通过定点诱变,研究了一个被认为对观察到的选择性至关重要的区域。PI3Kγ亚型的苏氨酸(886)和赖氨酸(890)残基朝向催化位点入口处的ATP结合口袋,但它们并不保守。我们在β亚型中的这些残基(谷氨酸(858)和天冬氨酸(862))与α亚型中的残基(组氨酸(855)和谷氨酰胺(859))之间进行了相互突变,并评估了一系列已报道的PI3K抑制剂的效力。结果表明,β选择性抑制剂TGX221和TGX286的效力不受此变化影响。相比之下,这些化合物的类似物,特别是α亚型选择性化合物(III),则受到点突变的显著影响。收集到的数据表明,这些抑制剂类别存在两种不同的结合模式,其中一种与高效的PI3Kβ活性相关,且与突变残基无关,另一种则如早期假设所述,确实涉及催化位点入口处的这对非保守氨基酸,并促成了所研究化合物的α亚型选择性。