Department of Biomedical Sciences, Texas Tech University Health Sciences Center El Paso, El Paso, TX 79905, USA.
Department of Biomedical Sciences, Texas Tech University Health Sciences Center El Paso, El Paso, TX 79905, USA.
Biochim Biophys Acta Proteins Proteom. 2017 Oct;1865(10):1274-1286. doi: 10.1016/j.bbapap.2017.07.002. Epub 2017 Jul 8.
Three NPXY motifs and one FERM domain in CCM1 makes it a versatile scaffold protein for tethering the signaling components together within the CCM signaling complex (CSC). The cellular role of CCM1 protein remains inadequately expounded. Both phosphotyrosine binding (PTB) and pleckstrin homology (PH) domains were recognized as structurally related but functionally distinct domains.
By utilizing molecular cloning, protein binding assays and RT-qPCR to identify novel cellular partners of CCM1 and its cellular expression patterns; by screening candidate PTB/PH proteins and subsequently structurally simulation in combining with current X-ray crystallography and NMR data to defined the essential structure of PTB/PH domain for NPXY-binding and the relationship among PTB, PH and FERM domain(s).
We identified a group of 28 novel cellular partners of CCM1, all of which contain either PTB or PH domain(s), and developed a novel classification system for these PTB/PH proteins based on their relationship with different NPXY motifs of CCM1. Our results demonstrated that CCM1 has a wide spectrum of binding to different PTB/PH proteins and perpetuates their specificity to interact with certain PTB/PH domains through selective combination of three NPXY motifs. We also demonstrated that CCM1 can be assembled into oligomers through intermolecular interaction between its F3 lobe in FERM domain and one of the three NPXY motifs. Despite being embedded in FERM domain as F3 lobe, F3 module acts as a fully functional PH domain to interact with NPXY motif. The most salient feature of the study was that both PTB and PH domains are structurally and functionally comparable, suggesting that PTB domain is likely evolved from PH domain with polymorphic structural additions at its N-terminus.
A new β1A-strand of the PTB domain was discovered and new minimum structural requirement of PTB/PH domain for NPXY motif-binding was determined. Based on our data, a novel theory of structure, function and relationship of PTB, PH and FERM domains has been proposed, which extends the importance of the NPXY-PTB/PH interaction on the CSC signaling and/or other cell receptors with great potential pointing to new therapeutic strategies.
The study provides new insight into the structural characteristics of PTB/PH domains, essential structural elements of PTB/PH domain required for NPXY motif-binding, and function and relationship among PTB, PH and FERM domains.
CCM1 中的三个 NPXY 基序和一个 FERM 结构域使其成为连接 CCM 信号复合物(CSC)内信号成分的多功能支架蛋白。CCM1 蛋白的细胞功能仍未得到充分阐述。磷酸酪氨酸结合(PTB)和pleckstrin 同源(PH)结构域都被认为是结构相关但功能不同的结构域。
通过利用分子克隆、蛋白质结合测定和 RT-qPCR 来鉴定 CCM1 的新型细胞伴侣及其细胞表达模式;通过筛选候选的 PTB/PH 蛋白,然后结合当前的 X 射线晶体学和 NMR 数据进行结构模拟,以确定 PTB/PH 结构域与 NPXY 结合的必需结构以及 PTB、PH 和 FERM 结构域之间的关系。
我们鉴定了一组 28 个 CCM1 的新型细胞伴侣,它们都含有 PTB 或 PH 结构域,并根据它们与 CCM1 的不同 NPXY 基序的关系,为这些 PTB/PH 蛋白建立了一种新的分类系统。我们的结果表明,CCM1 与不同的 PTB/PH 蛋白具有广泛的结合谱,并通过三个 NPXY 基序的选择性组合,使其特异性地与某些 PTB/PH 结构域相互作用。我们还表明,CCM1 可以通过其 FERM 结构域中的 F3 叶与三个 NPXY 基序之一之间的分子间相互作用组装成寡聚体。尽管 F3 模块作为 FERM 结构域中的 F3 叶嵌入其中,但它作为一个功能齐全的 PH 结构域与 NPXY 基序相互作用。该研究的最显著特征是,PTB 和 PH 结构域在结构和功能上是可比的,这表明 PTB 结构域可能是从 PH 结构域进化而来的,其 N 端具有多态性结构添加。
发现了一个新的 PTB 结构域的β1A 链,并确定了 PTB/PH 结构域与 NPXY 基序结合的最小结构要求。基于我们的数据,提出了一个关于 PTB、PH 和 FERM 结构域的结构、功能和关系的新理论,这扩展了 NPXY-PTB/PH 相互作用在 CSC 信号和/或其他具有巨大潜力的细胞受体上的重要性,为新的治疗策略指明了方向。
该研究为 PTB/PH 结构域的结构特征、PTB/PH 结构域与 NPXY 基序结合所必需的结构元件以及 PTB、PH 和 FERM 结构域之间的功能和关系提供了新的见解。