University of Pittsburgh, Department of Biological Sciences, Pittsburgh, PA 15260, USA.
J Cell Sci. 2010 Sep 15;123(Pt 18):3177-88. doi: 10.1242/jcs.063313. Epub 2010 Aug 24.
Normal cells respond appropriately to various signals, while sustaining proper developmental programs and tissue homeostasis. Inappropriate signal reception, response or attenuation, can upset the normal balance of signaling within cells, leading to dysfunction or tissue malformation. To understand the molecular mechanisms that regulate protein-kinase-based signaling in the context of tissue morphogenesis, we analyzed the domain requirements of Drosophila Slpr, a mixed-lineage kinase (MLK), for Jun N-terminal kinase (JNK) signaling. The N-terminal half of Slpr is involved in regulated signaling whereas the C-terminal half promotes cortical protein localization. The SH3 domain negatively regulates Slpr activity consistent with autoinhibition via a conserved proline motif. Also, like many kinases, conserved residues in the activation segment of the catalytic domain regulate Slpr. Threonine 295, in particular, is essential for function. Slpr activation requires dual input from the MAP4K Misshapen (Msn), through its C-terminal regulatory domain, and the GTPase Rac, which both bind to the LZ-CRIB region of Slpr in vitro. Although Rac is sufficient to activate JNK signaling, our results indicate that there are Slpr-independent functions for Rac in dorsal closure. Finally, expression of various Slpr constructs alone or with upstream activators reveals a wide-ranging response at the cell and tissue level.
正常细胞会对各种信号做出适当的反应,同时维持适当的发育程序和组织内稳态。不合适的信号接收、反应或衰减会打破细胞内信号的正常平衡,导致功能障碍或组织畸形。为了了解调节组织形态发生过程中基于蛋白激酶的信号的分子机制,我们分析了果蝇 Slpr 的结构域要求,Slpr 是一种混合谱系激酶(MLK),用于 Jun N-末端激酶(JNK)信号。Slpr 的 N 端参与调节信号,而 C 端促进皮质蛋白定位。SH3 结构域通过保守的脯氨酸基序负调控 Slpr 活性,符合自动抑制。此外,像许多激酶一样,催化结构域的激活片段中的保守残基调节 Slpr。特别是苏氨酸 295 对于功能至关重要。Slpr 的激活需要来自 MAP4K 畸形(Msn)的双重输入,通过其 C 端调节结构域,以及 GTPase Rac,Rac 在体外都结合到 Slpr 的 LZ-CRIB 区域。虽然 Rac 足以激活 JNK 信号,但我们的结果表明 Rac 在背侧闭合中有 Slpr 独立的功能。最后,单独表达各种 Slpr 构建体或与上游激活剂一起表达,在细胞和组织水平上显示出广泛的反应。