Prakash Thazha P, Allerson Charles R, Dande Prasad, Vickers Timothy A, Sioufi Namir, Jarres Russell, Baker Brenda F, Swayze Eric E, Griffey Richard H, Bhat Balkrishen
Department of Medicinal Chemistry, Isis Pharmaceuticals, Inc., 2292 Faraday Avenue, Carlsbad, California 92008, USA.
J Med Chem. 2005 Jun 30;48(13):4247-53. doi: 10.1021/jm050044o.
A systematic study on the effect of 2'-sugar modifications (2'-F (2'-F-2'-deoxy-nucleoside residues), 2'-O-Me (2'-O-methyl-nucleoside residues), and 2'-O-MOE [2'-O-(2-methoxyethyl)]-nucleoside residues) in the antisense and sense strands of short interference RNA (siRNA) was performed in HeLa cells. The study of the antisense strand of siRNAs demonstrated that activity depends on the position of the modifications in the sequence. The siRNAs with modified ribonucleotides at the 5'-end of the antisense strand were less active relative to the 3'-modified ones. The 2'-F sugar was generally well-tolerated on the antisense strand, whereas the 2'-O-Me showed significant shift in activity depending on the position of modification. The 2'-O-MOE modification in the antisense strand resulted in less active siRNA constructs regardless of placement position in the construct. The incorporation of the modified residues, e.g., 2'-O-Me and 2'-O-MOE, in the sense strand of siRNA did not show a strong positional preference. These results may provide guidelines to design effective and stable siRNAs for RNA interference mediated therapeutic applications.
在HeLa细胞中对短干扰RNA(siRNA)反义链和有义链中2'-糖修饰(2'-F(2'-氟-2'-脱氧核苷残基)、2'-O-Me(2'-O-甲基核苷残基)和2'-O-MOE [2'-O-(2-甲氧基乙基)]-核苷残基)的作用进行了系统研究。对siRNA反义链的研究表明,活性取决于修饰在序列中的位置。反义链5'-端带有修饰核糖核苷酸的siRNA相对于3'-修饰的siRNA活性较低。反义链上的2'-F糖通常耐受性良好,而2'-O-Me根据修饰位置显示出显著的活性变化。反义链中的2'-O-MOE修饰导致siRNA构建体活性降低,无论其在构建体中的位置如何。在siRNA有义链中掺入修饰残基,例如2'-O-Me和2'-O-MOE,未表现出强烈的位置偏好。这些结果可为设计用于RNA干扰介导的治疗应用的有效且稳定的siRNA提供指导。