Centre for Human Proteomics and Department of Physiology and Medical Physics, Royal College of Surgeons in Ireland, Dublin, Ireland.
PLoS One. 2010 Jan 20;5(1):e8799. doi: 10.1371/journal.pone.0008799.
Signal transduction by the NF-kappaB pathway is a key regulator of a host of cellular responses to extracellular and intracellular messages. The NEMO adaptor protein lies at the top of this pathway and serves as a molecular conduit, connecting signals transmitted from upstream sensors to the downstream NF-kappaB transcription factor and subsequent gene activation. The position of NEMO within this pathway makes it an attractive target from which to search for new proteins that link NF-kappaB signaling to additional pathways and upstream effectors. In this work, we have used protein microarrays to identify novel NEMO interactors. A total of 112 protein interactors were identified, with the most statistically significant hit being the canonical NEMO interactor IKKbeta, with IKKalpha also being identified. Of the novel interactors, more than 30% were kinases, while at least 25% were involved in signal transduction. Binding of NEMO to several interactors, including CALB1, CDK2, SAG, SENP2 and SYT1, was confirmed using GST pulldown assays and coimmunoprecipitation, validating the initial screening approach. Overexpression of CALB1, CDK2 and SAG was found to stimulate transcriptional activation by NF-kappaB, while SYT1 overexpression repressed TNFalpha-dependent NF-kappaB transcriptional activation in human embryonic kidney cells. Corresponding with this finding, RNA silencing of CDK2, SAG and SENP2 reduced NF-kappaB transcriptional activation, supporting a positive role for these proteins in the NF-kappaB pathway. The identification of a host of new NEMO interactors opens up new research opportunities to improve understanding of this essential cell signaling pathway.
NF-κB 通路的信号转导是细胞对外界和细胞内信号作出反应的关键调节因子。NEMO 衔接蛋白位于该通路的顶端,作为一种分子管道,将上游传感器传递的信号连接到下游的 NF-κB 转录因子和随后的基因激活。NEMO 在该通路中的位置使其成为一个有吸引力的靶点,可以从中寻找将 NF-κB 信号传递到其他通路和上游效应器的新蛋白质。在这项工作中,我们使用蛋白质微阵列来鉴定新的 NEMO 相互作用蛋白。共鉴定出 112 种蛋白质相互作用蛋白,其中最显著的命中是经典的 NEMO 相互作用蛋白 IKKβ,也鉴定出了 IKKα。在新的相互作用蛋白中,超过 30%是激酶,而至少 25%参与信号转导。使用 GST 下拉测定和共免疫沉淀证实了 NEMO 与几种相互作用蛋白(包括 CALB1、CDK2、SAG、SENP2 和 SYT1)的结合,验证了初始筛选方法。发现 CALB1、CDK2 和 SAG 的过表达可刺激 NF-κB 的转录激活,而 SYT1 的过表达可抑制人胚肾细胞中 TNFα 依赖性 NF-κB 转录激活。与这一发现相对应,CDK2、SAG 和 SENP2 的 RNA 沉默降低了 NF-κB 的转录激活,支持这些蛋白在 NF-κB 通路中发挥正向作用。新的 NEMO 相互作用蛋白的鉴定为深入了解这一关键细胞信号通路提供了新的研究机会。