Fernandez Eva M, Díaz-Ceso María D, Vilar Marçal
Laboratory of Neurodegeneration, Chronic Disease Program (UFIEC), Spanish Institute of Health Carlos III (ISCIII), Majadahonda, Madrid, Spain.
PLoS One. 2015 Jan 22;10(1):e0117206. doi: 10.1371/journal.pone.0117206. eCollection 2015.
Intrinsically disordered proteins (IDPs) are abundant in complex organisms. Due to their promiscuous nature and their ability to adopt several conformations IDPs constitute important points of network regulation. The family of Brain Expressed and X-linked (Bex) proteins consists of 5 members in humans (Bex1-5). Recent reports have implicated Bex proteins in transcriptional regulation and signaling pathways involved in neurodegeneration, cancer, cell cycle and tumor growth. However, structural and biophysical data for this protein family is almost non-existent. We used bioinformatics analyses to show that Bex proteins contain long regions of intrinsic disorder which are conserved across all members. Moreover, we confirmed the intrinsic disorder by circular dichroism spectroscopy of Bex1 after expression and purification in E. coli. These observations strongly suggest that Bex proteins constitute a new group of IDPs. Based on these findings, together with the demonstrated promiscuity of Bex proteins and their involvement in different signaling pathways, we propose that Bex family members play important roles in the formation of protein network hubs.
内在无序蛋白(IDP)在复杂生物体中大量存在。由于其混杂的性质以及能够呈现多种构象的能力,IDP构成了网络调控的重要节点。脑表达且与X染色体连锁(Bex)蛋白家族在人类中有5个成员(Bex1 - 5)。最近的报道表明Bex蛋白参与了神经退行性变、癌症、细胞周期和肿瘤生长相关的转录调控和信号通路。然而,关于这个蛋白家族的结构和生物物理数据几乎不存在。我们通过生物信息学分析表明,Bex蛋白包含长的内在无序区域,这些区域在所有成员中都是保守的。此外,我们在大肠杆菌中表达和纯化Bex1后,通过圆二色光谱法证实了其内在无序性。这些观察结果强烈表明Bex蛋白构成了一组新的IDP。基于这些发现,再加上已证明的Bex蛋白的混杂性及其参与不同信号通路的情况,我们提出Bex家族成员在蛋白质网络枢纽的形成中发挥重要作用。