Casali A, Casanova J
Institut de Biologia Molecular de Barcelona, CSIC, C/ Jordi Girona 18-26, Spain.
Development. 2001 May;128(9):1709-15. doi: 10.1242/dev.128.9.1709.
Regulated activation of receptor tyrosine kinases depends on both the presence of the receptors at the cell surface and on the availability of their ligands. In Drosophila, the torso tyrosine kinase receptor is distributed along the surface of the embryo but it is only activated at the poles by a diffusible extracellular ligand generated at each pole that is trapped by the receptor, thereby impeding further diffusion. Although it is known that this signal depends on the activity of several genes, such as torso-like and trunk, it is still unclear how is generated. The identification of the signal responsible for the torso receptor activation is an essential step towards understanding the mechanism that regulates the local restriction of torso signalling. Here we report that a fragment containing the carboxy-terminal 108 amino acids of the trunk protein retains trunk activity and is sufficient to activate torso signalling. We also show that this fragment bypasses the requirements for the other genes involved in the activation of the torso receptor. These results suggest that a cleaved form of the trunk protein acts as a signal for the torso receptor. We therefore propose that the restricted activation of the torso receptor is defined by the spatial control of the proteolytic processing of the trunk protein.
受体酪氨酸激酶的调控激活既取决于细胞表面受体的存在,也取决于其配体的可获得性。在果蝇中,躯干酪氨酸激酶受体沿胚胎表面分布,但仅在两极被每个极产生的可扩散细胞外配体激活,该配体被受体捕获,从而阻止其进一步扩散。尽管已知该信号依赖于几个基因(如类躯干和躯干)的活性,但信号如何产生仍不清楚。鉴定负责躯干受体激活的信号是理解调控躯干信号局部限制机制的关键一步。在此我们报告,包含躯干蛋白羧基末端108个氨基酸的片段保留了躯干活性,并且足以激活躯干信号。我们还表明,该片段绕过了激活躯干受体所需的其他基因的要求。这些结果表明,躯干蛋白的一种裂解形式作为躯干受体的信号。因此,我们提出,躯干受体的受限激活是由躯干蛋白蛋白水解加工的空间控制所定义的。