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Gene silencing of HIV chemokine receptors using ribozymes and single-stranded antisense RNA

机译:使用核酶和单链反义RNA沉默HIV趋化因子受体的基因

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摘要

The chemokine receptors CXCR4 and CCR5 are required for HIV-1 to enter cells, and the progression of HIV-1 infection to AIDS involves a switch in the co-receptor usage of the virus from CCR5 to CXCR4. These receptors therefore make attractive candidates for therapeutic intervention, and we have investigated the silencing of their genes by using ribozymes and single-stranded antisense RNAs. In the present study, we demonstrate using ribozymes that a depletion of CXCR4 and CCR5 mRNAs can be achieved simultaneously in human PBMCs (peripheral blood mononuclear cells), cells commonly used by the virus for infection and replication. Ribozyme activity leads to an inhibition of the cell-surface expression of both CCR5 and CXCR4, resulting in a significant inhibition of HIV-1 replication when PBMCs are challenged with the virus. In addition, we show that small single-stranded antisense RNAs can also be used to silence CCR5 and CXCR4 genes when delivered to PBMCs. This silencing is caused by selective degradation of receptor mRNAs.
机译:HIV-1进入细胞需要趋化因子受体CXCR4和CCR5,并且HIV-1感染向AIDS的发展涉及病毒的共受体使用方式从CCR5切换到CXCR4。因此,这些受体成为治疗干预的诱人候选物,并且我们已经通过使用核酶和单链反义RNA研究了其基因的沉默。在本研究中,我们证明了使用核酶可以在人PBMC(外周血单核细胞)(病毒通常用于感染和复制的细胞)中同时实现CXCR4和CCR5 mRNA的消耗。核酶活性导致抑制CCR5和CXCR4的细胞表面表达,从而在PBMC受到病毒攻击时显着抑制HIV-1复制。此外,我们显示了小的单链反义RNA也可用于在递送给PBMC时沉默CCR5和CXCR4基因。该沉默是由受体mRNA的选择性降解引起的。

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