Abes S, Moulton H, Turner J, Clair P, Richard J P, Iversen P, Gait M J, Lebleu B
Université Montpellier 2, UMR 5124 CNRS, place Eugene Bataillon, 34095 Montpellier cedex 5, France.
Biochem Soc Trans. 2007 Feb;35(Pt 1):53-5. doi: 10.1042/BST0350053.
CPPs (cell-penetrating peptides) have given rise to much interest for the delivery of biomolecules such as peptides, proteins or ONs (oligonucleotides). CPPs and their conjugates were initially thought to translocate through the cell membrane by a non-endocytotic mechanism which has recently been re-evaluated. Basic-amino-acid-rich CPPs first interact with cell-surface proteoglycans before being internalized by endocytosis. Sequestration and degradation in endocytotic vesicles severely limits the cytoplasmic and nuclear delivery of the conjugated biomolecules. Accordingly, splicing correction by CPP-conjugated steric-block ON analogues is inefficient in the absence of endosomolytic agents. New arginine-rich CPPs allowing efficient splicing correction by conjugated PNAs (peptide nucleic acids) or PMO (phosphorodiamidate morpholino oligomer) steric blockers in the absence of endosomolytic agents have recently been defined in our group and are currently being characterized. They offer promising leads for the development of efficient cellular delivery vectors for therapeutic steric-block ON analogues.
细胞穿透肽(CPPs)在递送诸如肽、蛋白质或寡核苷酸(ONs)等生物分子方面引起了广泛关注。CPPs及其缀合物最初被认为是通过一种非内吞机制穿过细胞膜的,不过最近这一机制已被重新评估。富含碱性氨基酸的CPPs首先与细胞表面蛋白聚糖相互作用,然后通过内吞作用被内化。在内吞小泡中的隔离和降解严重限制了缀合生物分子向细胞质和细胞核的递送。因此,在没有溶酶体溶解剂的情况下,由CPP缀合的空间位阻ON类似物进行的剪接校正效率低下。最近我们小组鉴定出了新型富含精氨酸的CPPs,它们在没有溶酶体溶解剂的情况下能通过缀合的肽核酸(PNA)或磷二酰胺吗啉代寡聚物(PMO)空间位阻阻断剂实现高效的剪接校正,目前正在对其进行表征。它们为开发用于治疗性空间位阻ON类似物的高效细胞递送载体提供了有前景的线索。