Moulton H M, Fletcher S, Neuman B W, McClorey G, Stein D A, Abes S, Wilton S D, Buchmeier M J, Lebleu B, Iversen P L
AVI BioPharma Inc., 4575 SW Research Way, Corvallis, OR 97333, USA.
Biochem Soc Trans. 2007 Aug;35(Pt 4):826-8. doi: 10.1042/BST0350826.
The cellular uptake of PMOs (phosphorodiamidate morpholino oligomers) can be enhanced by their conjugation to arginine-rich CPPs (cell-penetrating peptides). Here, we discuss our recent findings regarding (R-Ahx-R)(4)AhxB (Ahx is 6-aminohexanoic acid and B is beta-alanine) CPP-PMO conjugates in DMD (Duchenne muscular dystrophy) and murine coronavirus research. An (R-Ahx-R)(4)AhxB-PMO conjugate was the most effective compound in inducing the correction of mutant dystrophin transcripts in myoblasts derived from a canine model of DMD. Similarly, normal levels of dystrophin expression were restored in the diaphragms of mdx mice, with treatment starting at the neonatal stage, and protein was still detecTable 22 weeks after the last dose of an (R-Ahx-R)(4)AhxB-PMO conjugate. Effects of length, linkage and carbohydrate modification of this CPP on the delivery of a PMO were investigated in a coronavirus mouse model. An (R-Ahx-R)(4)AhxB-PMO conjugate effectively inhibited viral replication, in comparison with other peptides conjugated to the same PMO. Shortening the CPP length, modifying it with a mannosylated serine moiety or replacing it with the R(9)F(2) CPP significantly decreased the efficacy of the resulting PPMO (CPP-PMO conjugate). We attribute the success of this CPP to its stability in serum and its capacity to transport PMO to RNA targets in a manner superior to that of poly-arginine CPPs.
通过将磷酰二胺吗啉代寡聚物(PMO)与富含精氨酸的细胞穿透肽(CPP)偶联,可以增强其细胞摄取。在此,我们讨论了我们最近在杜氏肌营养不良症(DMD)和鼠冠状病毒研究中关于(R-Ahx-R)(4)AhxB(Ahx为6-氨基己酸,B为β-丙氨酸)CPP-PMO偶联物的研究结果。一种(R-Ahx-R)(4)AhxB-PMO偶联物是诱导来自DMD犬模型的成肌细胞中突变肌营养不良蛋白转录本校正的最有效化合物。同样,在新生期开始治疗的mdx小鼠膈肌中恢复了正常水平的肌营养不良蛋白表达,并且在最后一剂(R-Ahx-R)(4)AhxB-PMO偶联物后22周仍可检测到蛋白质。在冠状病毒小鼠模型中研究了这种CPP的长度、连接和碳水化合物修饰对PMO递送的影响。与与相同PMO偶联的其他肽相比,一种(R-Ahx-R)(4)AhxB-PMO偶联物有效地抑制了病毒复制。缩短CPP长度、用甘露糖基化丝氨酸部分修饰它或用R(9)F(2) CPP替代它会显著降低所得PPMO(CPP-PMO偶联物)的功效。我们将这种CPP的成功归因于其在血清中的稳定性及其以优于聚精氨酸CPP的方式将PMO转运至RNA靶标的能力。