Department of Biosciences, University of Salzburg, Billrothstrasse 11 and Hellbrunner Strasse 34, 5020 Salzburg, Austria.
Christian Doppler Laboratory for Innovative Tools for Biosimilar Characterization, University of Salzburg, Hellbrunner Strasse 34, 5020 Salzburg, Austria.
Int J Mol Sci. 2018 Apr 7;19(4):1105. doi: 10.3390/ijms19041105.
The inhibitor of DNA binding and cell differentiation 2 (Id2) is a helix-loop-helix (HLH) protein that acts as negative dominant regulator of basic-HLH transcription factors during development and in cancer. The structural properties of Id2 have been investigated so far by using synthetic or recombinant fragments reproducing single domains (N-terminus, HLH, C-terminus): the HLH domain tends to dimerize into a four-helix bundle, whereas the flanking regions are flexible. In this work, the intact protein was expressed in , solubilized from inclusion bodies with urea, purified and dissolved in water at pH~4. Under these conditions, Id2 was obtained with both cysteine residues disulfide-bonded to β-mercaptoethanol that was present during the solubilization process. Moreover, it existed in a self-assembled state, in which the N-terminus remained highly flexible, while the HLH domain and, surprisingly, part of the C-terminus, which corresponds to the nuclear export signal (NES), both were involved in slowly tumbling, rigid structures. The protein oligomers also formed twisted fibrils that were several micrometers long and up to 80 nm thick. These results show that self-assembly decreases the backbone flexibility of those two protein regions (HLH and NES) that are important for interaction with basic-HLH transcription factors or for nucleocytoplasmic shuttling.
DNA 结合抑制因子和细胞分化 2(Id2)是一种螺旋-环-螺旋(HLH)蛋白,在发育过程中和癌症中作为碱性 HLH 转录因子的负显性调节因子发挥作用。迄今为止,Id2 的结构特性已通过使用合成或重组片段来研究,这些片段复制了单个结构域(N 端、HLH、C 端):HLH 结构域倾向于二聚形成四螺旋束,而侧翼区域则具有柔韧性。在这项工作中,完整的蛋白质在 中表达,用尿素从包涵体中溶解,然后在 pH~4 的水中进行纯化和溶解。在这些条件下,Id2 中的两个半胱氨酸残基与β-巯基乙醇形成二硫键,而β-巯基乙醇存在于溶解过程中。此外,它存在于自组装状态下,其中 N 端仍然高度灵活,而 HLH 结构域和令人惊讶的是,C 端的一部分,对应核输出信号(NES),都参与了缓慢旋转的刚性结构。该蛋白质寡聚体还形成了扭曲的原纤维,这些原纤维长几微米,厚达 80nm。这些结果表明,自组装降低了与碱性 HLH 转录因子相互作用或核质穿梭所必需的这两个蛋白质区域(HLH 和 NES)的主链柔韧性。