Instituto de Investigaciones Biotecnológicas Dr. Rodolfo A. Ugalde, Instituto Tecnológico de Chascomús, Universidad Nacional de San Martín, IIB-INTECH CONICET, Buenos Aires, Argentina.
CNRS, INSERM, CIML, Aix Marseille Univ, Marseille, France.
Cell Microbiol. 2018 Jun;20(6):e12850. doi: 10.1111/cmi.12850. Epub 2018 May 9.
Cyclic β-1,2-D-glucans (CβG) are natural bionanopolymers present in the periplasmic space of many Proteobacteria. These molecules are sugar rings made of 17 to 25 D-glucose units linked exclusively by β-1,2-glycosidic bonds. CβG are important for environmental sensing and osmoadaptation in bacteria, but most importantly, they play key roles in complex host-cell interactions such as symbiosis, pathogenesis, and immunomodulation. In the last years, the identification and characterisation of the enzymes involved in the synthesis of CβG allowed to know in detail the steps necessary for the formation of these sugar rings. Due to its peculiar structure, CβG can complex large hydrophobic molecules, a feature possibly related to its function in the interaction with the host. The capabilities of the CβG to function as molecular boxes and to solubilise hydrophobic compounds are attractive for application in the development of drugs, in food industry, nanotechnology, and chemistry. More importantly, its excellent immunomodulatory properties led to the proposal of CβG as a new class of adjuvants for vaccine development.
环 β-1,2-D-葡聚糖(CβG)是存在于许多变形菌周质空间中的天然生物纳米聚合物。这些分子是由 17 到 25 个 D-葡萄糖单元通过β-1,2-糖苷键连接而成的糖环。CβG 对细菌的环境感应和渗透适应很重要,但最重要的是,它们在复杂的宿主细胞相互作用中发挥关键作用,如共生、发病机制和免疫调节。在过去的几年中,参与 CβG 合成的酶的鉴定和特性研究使得我们详细了解了形成这些糖环所需的步骤。由于其独特的结构,CβG 可以与大的疏水分子结合,这一特性可能与其在与宿主相互作用中的功能有关。CβG 作为分子盒的功能和溶解疏水性化合物的能力,使其在药物开发、食品工业、纳米技术和化学等领域的应用具有吸引力。更重要的是,其出色的免疫调节特性促使人们提出将 CβG 作为一种新的佐剂用于疫苗开发。