Xiang Siheng, Kato Masato, Wu Leeju C, Lin Yi, Ding Ming, Zhang Yajie, Yu Yonghao, McKnight Steven L
Department of Biochemistry, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390, USA.
Department of Biochemistry, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390, USA.
Cell. 2015 Nov 5;163(4):829-39. doi: 10.1016/j.cell.2015.10.040.
Many DNA and RNA regulatory proteins contain polypeptide domains that are unstructured when analyzed in cell lysates. These domains are typified by an over-representation of a limited number of amino acids and have been termed prion-like, intrinsically disordered or low-complexity (LC) domains. When incubated at high concentration, certain of these LC domains polymerize into labile, amyloid-like fibers. Here, we report methods allowing the generation of a molecular footprint of the polymeric state of the LC domain of hnRNPA2. By deploying this footprinting technique to probe the structure of the native hnRNPA2 protein present in isolated nuclei, we offer evidence that its LC domain exists in a similar conformation as that described for recombinant polymers of the protein. These observations favor biologic utility to the polymerization of LC domains in the pathway of information transfer from gene to message to protein.
许多DNA和RNA调节蛋白含有在细胞裂解物中分析时无结构的多肽结构域。这些结构域的特点是有限数量的氨基酸过度富集,并被称为类朊病毒、内在无序或低复杂性(LC)结构域。当在高浓度下孵育时,其中某些LC结构域会聚合成不稳定的、淀粉样纤维。在这里,我们报告了一些方法,可用于生成hnRNPA2的LC结构域聚合状态的分子足迹。通过运用这种足迹技术来探测分离细胞核中存在的天然hnRNPA2蛋白的结构,我们提供了证据,表明其LC结构域存在的构象与该蛋白重组聚合物所描述的构象相似。这些观察结果支持了LC结构域在从基因到信使再到蛋白质的信息传递途径中的聚合具有生物学效用。