Ruggiero Alessia, Squeglia Flavia, Romano Maria, Vitagliano Luigi, De Simone Alfonso, Berisio Rita
Institute of Biostructures and Bioimaging, CNR, via Mezzocannone 16, Napoli, Italy.
Division of Molecular Biosciences, Imperial College London, SW7 2AZ, UK.
Biochim Biophys Acta. 2016 Feb;1860(2):445-51. doi: 10.1016/j.bbagen.2015.11.001. Epub 2015 Nov 5.
RpfB is a key factor in resuscitation from dormancy of Mycobacterium tuberculosis. This protein is a cell-wall glycosidase, which cleaves cell-wall peptidoglycan. RpfB is structurally complex and is composed of three types of domains, including a catalytic, a G5 and three DUF348 domains. Structural information is currently limited to a portion of the protein including only the catalytic and G5 domains. To gain insights into the structure and function of all domains we have undertaken structural investigations on a large protein fragment containing all three types of domains that constitute RpfB (RpfB3D).
The structural features of RpfB3D have been investigated combining x-ray crystallography and biophysical studies.
The crystal structure of RpfB3D provides the first structural characterization of a DUF348 domain and revealed an unexpected structural relationship with ubiquitin. The crystal structure also provides specific structural features of these domains explaining their frequent association with G5 domains.
Results provided novel insights into the mechanism of peptidoglycan degradation necessary to the resuscitation of M. tuberculosis. Features of the DUF348 domain add structural data to a large set of proteins embedding this domain. Based on its structural similarity to ubiquitin and frequent association to the G5 domain, we propose to name this domain as G5-linked-Ubiquitin-like domain, UBLG5.
RpfB是结核分枝杆菌从休眠状态复苏的关键因子。该蛋白是一种细胞壁糖苷酶,可切割细胞壁肽聚糖。RpfB结构复杂,由三种类型的结构域组成,包括一个催化结构域、一个G5结构域和三个DUF348结构域。目前的结构信息仅限于该蛋白的一部分,仅包括催化结构域和G5结构域。为了深入了解所有结构域的结构和功能,我们对包含构成RpfB的所有三种类型结构域的大蛋白片段(RpfB3D)进行了结构研究。
结合X射线晶体学和生物物理研究对RpfB3D的结构特征进行了研究。
RpfB3D的晶体结构首次对DUF348结构域进行了结构表征,并揭示了其与泛素意想不到的结构关系。晶体结构还提供了这些结构域的特定结构特征,解释了它们与G5结构域频繁结合的原因。
研究结果为结核分枝杆菌复苏所需的肽聚糖降解机制提供了新的见解。DUF348结构域的特征为大量包含该结构域的蛋白质增加了结构数据。基于其与泛素的结构相似性以及与G5结构域的频繁结合,我们建议将该结构域命名为G5连接的泛素样结构域,即UBLG5。