Durick K, Gill G N, Taylor S S
Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla 92093-0654, USA.
Mol Cell Biol. 1998 Apr;18(4):2298-308. doi: 10.1128/MCB.18.4.2298.
Ret/ptc2 is a constitutively active, oncogenic form of the c-Ret receptor tyrosine kinase. Like the other papillary thyroid carcinoma forms of Ret, Ret/ptc2 is activated through fusion of the Ret tyrosine kinase domain to the dimerization domain of another protein. Investigation of requirements for Ret/ptc2 mitogenic activity, using coexpression with dominant negative forms of Ras and Raf, indicated that these proteins are required for mitogenic signaling by Ret/ptc2. Because activation of Ras requires recruitment of Grb2 and SOS to the plasma membrane, the subcellular distribution of Ret/ptc2 was investigated, and it was found to localize to the cell periphery. This localization was mediated by association with Enigma via the Ret/ptc2 sequence containing tyrosine 586. Because Shc interacts with MEN2 forms of Ret, and because phosphorylation of Shc results in Grb2 recruitment and subsequent signaling through Ras and Raf, the potential interaction between Ret/ptc2 and Shc was investigated. The PTB domain of Shc also interacted with Ret/ptc2 at tyrosine 586, and this association resulted in tyrosine phosphorylation of Shc. Coexpression of chimeric proteins demonstrated that mitogenic signaling from Ret/ptc2 required both recruitment of Shc and subcellular localization by Enigma. Because Shc and Enigma interact with the same site on a Ret/ptc2 monomer, dimerization of Ret/ptc2 allows assembly of molecular complexes that are properly localized via Enigma and transmit mitogenic signals via Shc.
Ret/ptc2是c-Ret受体酪氨酸激酶的一种组成型激活的致癌形式。与其他甲状腺乳头状癌形式的Ret一样,Ret/ptc2通过Ret酪氨酸激酶结构域与另一种蛋白质的二聚化结构域融合而被激活。利用与Ras和Raf的显性负性形式共表达来研究Ret/ptc2促有丝分裂活性的需求,结果表明这些蛋白质是Ret/ptc2促有丝分裂信号传导所必需的。由于Ras的激活需要将Grb2和SOS募集到质膜上,因此对Ret/ptc2的亚细胞分布进行了研究,发现它定位于细胞周边。这种定位是通过包含酪氨酸586的Ret/ptc2序列与Enigma结合介导的。由于Shc与Ret的MEN2形式相互作用,并且由于Shc的磷酸化导致Grb2募集并随后通过Ras和Raf进行信号传导,因此研究了Ret/ptc2与Shc之间的潜在相互作用。Shc的PTB结构域也在酪氨酸586处与Ret/ptc2相互作用,这种结合导致Shc的酪氨酸磷酸化。嵌合蛋白的共表达表明,Ret/ptc2的促有丝分裂信号传导既需要Shc的募集,也需要Enigma进行亚细胞定位。由于Shc和Enigma与Ret/ptc2单体上的同一位点相互作用,Ret/ptc2的二聚化允许组装通过Enigma正确定位并通过Shc传递促有丝分裂信号的分子复合物。