Boothby Thomas C, Tapia Hugo, Brozena Alexandra H, Piszkiewicz Samantha, Smith Austin E, Giovannini Ilaria, Rebecchi Lorena, Pielak Gary J, Koshland Doug, Goldstein Bob
Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA; Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
Department of Molecular and Cell Biology, University of California, Berkeley, Berkeley, CA 94720, USA.
Mol Cell. 2017 Mar 16;65(6):975-984.e5. doi: 10.1016/j.molcel.2017.02.018.
Tardigrades are microscopic animals that survive a remarkable array of stresses, including desiccation. How tardigrades survive desiccation has remained a mystery for more than 250 years. Trehalose, a disaccharide essential for several organisms to survive drying, is detected at low levels or not at all in some tardigrade species, indicating that tardigrades possess potentially novel mechanisms for surviving desiccation. Here we show that tardigrade-specific intrinsically disordered proteins (TDPs) are essential for desiccation tolerance. TDP genes are constitutively expressed at high levels or induced during desiccation in multiple tardigrade species. TDPs are required for tardigrade desiccation tolerance, and these genes are sufficient to increase desiccation tolerance when expressed in heterologous systems. TDPs form non-crystalline amorphous solids (vitrify) upon desiccation, and this vitrified state mirrors their protective capabilities. Our study identifies TDPs as functional mediators of tardigrade desiccation tolerance, expanding our knowledge of the roles and diversity of disordered proteins involved in stress tolerance.
缓步动物是一种微观动物,能够在包括脱水在内的一系列极端压力下存活。250多年来,缓步动物如何在脱水状态下存活一直是个谜。海藻糖是几种生物在干燥环境中生存所必需的二糖,在一些缓步动物物种中检测到的水平很低或根本检测不到,这表明缓步动物拥有潜在的新型脱水生存机制。在这里,我们表明,缓步动物特有的内在无序蛋白(TDP)对耐干燥性至关重要。TDP基因在多个缓步动物物种中持续高水平表达或在脱水过程中被诱导。TDP是缓步动物耐干燥性所必需的,当在异源系统中表达时,这些基因足以提高耐干燥性。TDP在脱水时形成非晶态无定形固体(玻璃化),这种玻璃化状态反映了它们的保护能力。我们的研究确定TDP是缓步动物耐干燥性的功能介质,扩展了我们对参与应激耐受的无序蛋白的作用和多样性的认识。