Högbom Martin, Collins Ruairi, van den Berg Susanne, Jenvert Rose-Marie, Karlberg Tobias, Kotenyova Tetyana, Flores Alex, Karlsson Hedestam Gunilla B, Schiavone Lovisa Holmberg
Structural Genomics Consortium, Department of Medical Biochemistry and Biophysics, Karolinska Institute, SE-171 77 Stockholm, Sweden.
J Mol Biol. 2007 Sep 7;372(1):150-9. doi: 10.1016/j.jmb.2007.06.050. Epub 2007 Jun 26.
DExD-box helicases are involved in all aspects of cellular RNA metabolism. Conserved domains 1 and 2 contain nine signature motifs that are responsible for nucleotide binding, RNA binding and ATP hydrolysis. The human DEAD-box helicase DDX3X has been associated with several different cellular processes, such as cell-growth control, mRNA transport and translation, and is suggested to be essential for the export of unspliced/partially spliced HIV mRNAs from the nucleus to the cytoplasm. Here, the crystal structure of conserved domains 1 and 2 of DDX3X, including a DDX3-specific insertion that is not generally found in human DExD-box helicases, is presented. The N-terminal domain 1 and the C-terminal domain 2 both display RecA-like folds comprising a central beta-sheet flanked by alpha-helices. Interestingly, the DDX3X-specific insertion forms a helical element that extends a highly positively charged sequence in a loop, thus increasing the RNA-binding surface of the protein. Surprisingly, although DDX3X was crystallized in the presence of a large excess of ADP or the slowly hydrolyzable ATP analogue ATPgammaS the contaminant AMP was seen in the structure. A fluorescent-based stability assay showed that the thermal stability of DDX3X was increased by the mononucleotide AMP but not by ADP or ATPgammaS, suggesting that DDX3X is stabilized by AMP and elucidating why AMP was found in the nucleotide-binding pocket.
DExD盒解旋酶参与细胞RNA代谢的各个方面。保守结构域1和2包含九个特征基序,负责核苷酸结合、RNA结合和ATP水解。人类DEAD盒解旋酶DDX3X与多种不同的细胞过程相关,如细胞生长控制、mRNA运输和翻译,并且被认为对于未剪接/部分剪接的HIV mRNA从细胞核输出到细胞质至关重要。在此,展示了DDX3X保守结构域1和2的晶体结构,包括一个在人类DExD盒解旋酶中通常不存在的DDX3特异性插入序列。N端结构域1和C端结构域2均呈现出类似RecA的折叠,由中央β折叠片和两侧的α螺旋组成。有趣的是,DDX3X特异性插入序列形成了一个螺旋元件,该元件在一个环中延伸了一个高度带正电荷的序列,从而增加了蛋白质的RNA结合表面。令人惊讶的是,尽管DDX3X是在大量过量的ADP或缓慢水解的ATP类似物ATPγS存在下结晶的,但在结构中却发现了污染物AMP。基于荧光的稳定性测定表明,单核苷酸AMP增加了DDX3X的热稳定性,而ADP或ATPγS则没有,这表明DDX3X被AMP稳定,并解释了为什么在核苷酸结合口袋中发现了AMP。