Chukhlieb Maryna, Raasakka Arne, Ruskamo Salla, Kursula Petri
Faculty of Biochemistry and Molecular Medicine, Biocenter Oulu, University of Oulu, Oulu, Finland.
Amino Acids. 2015 Aug;47(8):1567-77. doi: 10.1007/s00726-015-1998-x. Epub 2015 May 6.
Axonally expressed neuregulin 1 (NRG1) type III is a transmembrane protein involved in various neurodevelopmental processes, including myelination and Schwann cell migration. NRG1 type III has one transmembrane domain and a C-terminal extracellular segment, which contains an epidermal growth factor homology domain. Little is known, however, about the intracellular N terminus of NRG1 type III, and the structure-function relationships of this cytoplasmic domain have remained uncharacterized. In the current study, we carried out the first structural and functional studies on the NRG1 type III cytoplasmic domain. Based on sequence analyses, the domain is predicted to be largely disordered, while a strictly conserved region close to the transmembrane segment may contain helical structure and bind metal ions. As shown by synchrotron radiation circular dichroism spectroscopy, the recombinant NRG1 type III cytoplasmic domain was disordered in solution, but it was able to fold partially into a helical structure, especially when both metals and membrane-mimicking compounds were present. NRG1 cytoplasmic tail binding to metals was further confirmed by calorimetry. These results suggest that the juxtamembrane segment of the NRG1 type III cytoplasmic domain may fold onto the membrane surface upon metal binding. Using synchrotron small-angle X-ray scattering, we further proved that the NRG1 cytoplasmic domain is intrinsically disordered, highly elongated, and behaves like a random polymer. Our work provides the first biochemical and biophysical data on the previously unexplored cytoplasmic domain of NRG1 type III, which will help elucidate the detailed structure-function relationships of this domain.
轴突表达的神经调节蛋白1(NRG1)III型是一种跨膜蛋白,参与多种神经发育过程,包括髓鞘形成和施万细胞迁移。NRG1 III型有一个跨膜结构域和一个C端细胞外片段,其中包含一个表皮生长因子同源结构域。然而,关于NRG1 III型的细胞内N端知之甚少,该细胞质结构域的结构-功能关系仍未得到表征。在本研究中,我们对NRG1 III型细胞质结构域进行了首次结构和功能研究。基于序列分析,该结构域预计在很大程度上是无序的,而靠近跨膜片段的一个严格保守区域可能包含螺旋结构并结合金属离子。同步辐射圆二色光谱显示,重组NRG1 III型细胞质结构域在溶液中是无序的,但它能够部分折叠成螺旋结构,尤其是当金属和模拟膜的化合物都存在时。量热法进一步证实了NRG1细胞质尾巴与金属的结合。这些结果表明,NRG1 III型细胞质结构域的近膜片段在与金属结合后可能折叠到膜表面。使用同步辐射小角X射线散射,我们进一步证明了NRG1细胞质结构域本质上是无序的、高度拉长的,并且表现得像一种无规聚合物。我们的工作提供了关于NRG1 III型以前未被探索的细胞质结构域的首批生化和生物物理数据,这将有助于阐明该结构域详细的结构-功能关系。