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一种肽缀合物能够实现吗啉代诱导剂的全身注射,并在小鼠中更持久地诱导T3H38核酶控制的腺相关病毒转基因。

A peptide conjugate enables systemic injection of the morpholino inducer and more durable induction of T3H38 ribozyme-controlled AAV transgene in mice.

作者信息

Tang Xiaojuan, Wang Haimin, Yin Yandong, Zhong Guocai

机构信息

State Key Laboratory of Chemical Oncogenomics, Shenzhen Key Laboratory of Chemical Genomics, Peking University Shenzhen Graduate School, Shenzhen, Guangdong, China.

Institute of Chemical Biology, Shenzhen Bay Laboratory, Shenzhen, Guangdong, China.

出版信息

Gene Ther. 2025 Mar;32(2):163-171. doi: 10.1038/s41434-025-00519-8. Epub 2025 Feb 12.

Abstract

Genetic switches that allow for precise control over transgene expression timing or levels may improve the safety and expand the use of adeno-associated viral (AAV) vector-based gene therapy technologies. We previously engineered an efficient RNA switch system that comprises a novel self-cleaving ribozyme (T3H38) and an octaguanidine dendrimer-conjugated morpholino oligonucleotide (v-M8) complementary to the ribozyme. This switch system can be used to efficiently regulate AAV-delivered transgenes with an up to 200-fold regulatory range in mice. However, this switch system has a relatively short induction half-life and only works well when v-M8 was locally but not systemically administered, representing two key limitations of the system. To address these issues, here, we tested replacing the octa-guanidine dendrimer in the v-M8 morpholino oligo with a cell-penetrating peptide (CPP). Two CPP-conjugated morpholino oligos (B-M8 and B-MSP-M8) were synthesized and compared with v-M8 for the induction of T3H38-regulated AAV-luciferase in mice. One of the CPP-conjugated oligos (B-MSP-M8) not only showed significantly improved induction half-life over that of v-M8, but also enabled efficient induction of AAV transgene expression when the oligo was systemically administered. This study improves in vivo performance and broadens the utility of the T3H38 ribozyme-based RNA switch system in gene therapy applications.

摘要

能够精确控制转基因表达时间或水平的基因开关,可能会提高基于腺相关病毒(AAV)载体的基因治疗技术的安全性并扩大其应用范围。我们之前设计了一种高效的RNA开关系统,该系统由一种新型的自切割核酶(T3H38)和一种与核酶互补的八胍树枝状聚合物缀合的吗啉代寡核苷酸(v-M8)组成。这种开关系统可用于在小鼠中高效调节AAV递送的转基因,调节范围高达200倍。然而,这种开关系统的诱导半衰期相对较短,并且只有在局部而非全身给予v-M8时才有效,这是该系统的两个关键限制。为了解决这些问题,在此我们测试了用细胞穿透肽(CPP)替代v-M8吗啉代寡核苷酸中的八胍树枝状聚合物。合成了两种CPP缀合的吗啉代寡核苷酸(B-M8和B-MSP-M8),并与v-M8比较了它们在小鼠中诱导T3H38调节的AAV-荧光素酶的能力。其中一种CPP缀合的寡核苷酸(B-MSP-M8)不仅显示出比v-M8显著改善的诱导半衰期,而且在全身给予该寡核苷酸时能够有效诱导AAV转基因表达。本研究改善了体内性能,并拓宽了基于T3H38核酶的RNA开关系统在基因治疗应用中的效用。

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