Siemer Jessica L, Le Thao T, Paul Ananya, Boykin David W, Brinton Margo A, Wilson W David, Germann Markus W
Department of Chemistry, Georgia State University; Atlanta, Georgia 30303, United States.
Department of Biology, Georgia State University; Atlanta, Georgia 30303, United States.
ACS Infect Dis. 2025 Jan 10;11(1):88-94. doi: 10.1021/acsinfecdis.4c00615. Epub 2024 Dec 12.
Arthropod-borne members of the genus cause significant human disease. Four serotypes of dengue virus are endemic globally, and approximately 50 percent of the world's population lives in a dengue-affected area. Complications from immunoenhancement occurring after a secondary infection with a different dengue serotype make vaccine development challenging. Antiviral therapies that target features conserved in all four serotypes would, therefore, be beneficial. Computational studies identified multiple potential G-quadruplex sites that are conserved in the RNA genome sequences of members of the genus . Biophysical studies confirmed that the NS5-B quadruplex sequences obtained from viruses of each dengue serotype can form quadruplexes , and binding data showed that known quadruplex binders stabilized NS5-B quadruplexes for all four dengue serotypes.
该属节肢动物传播的成员可引发严重的人类疾病。登革病毒的四种血清型在全球呈地方性流行,全球约50%的人口生活在登革热感染地区。二次感染不同登革热血清型后发生的免疫增强并发症使疫苗研发具有挑战性。因此,针对所有四种血清型中保守特征的抗病毒疗法将是有益的。计算研究确定了该属成员RNA基因组序列中多个潜在的G-四链体位点。生物物理研究证实,从每种登革热血清型病毒获得的NS5-B四链体序列可形成四链体,结合数据表明,已知的四链体结合剂可稳定所有四种登革热血清型的NS5-B四链体。