Teng D H, Engele C M, Venkatesh T R
Institute of Molecular Biology, University of Oregon, Eugene 97403.
Nature. 1991 Oct 3;353(6343):437-40. doi: 10.1038/353437a0.
The X-linked prune (pn) eye-colour mutation of Drosophila melanogaster has a highly specific, complementary lethal interaction with the conditional dominant Killer of prune (awdK-pn) mutation. Although awdK-pn flies have no apparent phenotype on their own, pn awdK-pn double mutants die as second or third larval instars. The awd locus encodes a nucleoside diphosphate kinase, an enzyme that catalyses the transfer of high-energy phosphate bonds between nucleoside diphosphates and nucleoside triphosphates, which is essential for the normal development of Drosophila. Analysis of the pn locus has suggested that the complementary DNA, TcD37, encodes a putative pn+ product. Here we report the nucleotide sequence of TcD37 and the similarity of its deduced protein product to the catalytic domain of mammalian GTPase-activating proteins (GAPs); GAPs stimulate the GTPase activity of Ras (ref. 6), which are plasma membrane-bound proteins involved in the regulation of cell proliferation and differentiation. These results suggest that the Drosophila TcD37 protein participates in a biochemical pathway similar to that of Ras and GAPs in mammals and yeast. We propose that the interaction between pn and awd is due to a neomorphic mutation that enhances the ability of AwdK-pn nucleoside diphosphate kinase to induce a regulatory GTPase into a GTP-bound 'on' state, whereas Pn modulates the activity of this GTPase either by switching it to a GDP-bound 'off' state or by interfering with its effector function.
果蝇黑腹果蝇的X连锁梅干(pn)眼色突变与条件显性的梅干杀手(awdK-pn)突变具有高度特异性的互补致死相互作用。尽管awdK-pn果蝇自身没有明显的表型,但pn awdK-pn双突变体在第二或第三幼虫龄期死亡。awd基因座编码一种核苷二磷酸激酶,该酶催化核苷二磷酸和核苷三磷酸之间高能磷酸键的转移,这对果蝇的正常发育至关重要。对pn基因座的分析表明,互补DNA TcD37编码一种推定的pn+产物。在这里,我们报告了TcD37的核苷酸序列及其推导的蛋白质产物与哺乳动物GTP酶激活蛋白(GAPs)催化结构域的相似性;GAPs刺激Ras的GTP酶活性(参考文献6),Ras是参与细胞增殖和分化调节的质膜结合蛋白。这些结果表明,果蝇TcD37蛋白参与了一条与哺乳动物和酵母中Ras和GAPs类似的生化途径。我们提出,pn和awd之间的相互作用是由于一种新形态突变,该突变增强了AwdK-pn核苷二磷酸激酶将调节性GTP酶诱导到GTP结合的“开启”状态的能力,而Pn则通过将其转换为GDP结合的“关闭”状态或干扰其效应器功能来调节这种GTP酶的活性。