Okada Masayoshi, Andharia Naaz, Matsuda Hiroko
Department of Physiology, Kansai Medical University, 2-5-1 Shin-machi, Hirakata, Osaka, 573-1010, Japan.
BMC Neurosci. 2015 May 5;16:30. doi: 10.1186/s12868-015-0159-1.
High titers of lentiviral vectors are required for the efficient transduction of a gene of interest. During preparation of lentiviral the vectors, the protein of interest is inevitably expressed in the viral vector-producing cells. This expression may affect the production of the lentiviral vector.
We prepared lentiviral vectors expressing inwardly rectifying potassium channel (Lv-Kir2.1), its dominant-negative form (Lv-Kir-DN), and other K(+) channels, using the ubiquitously active β-actin and neuron-specific synapsin I promoters.
The titer of Lv-Kir-DN was higher than that of Lv-Kir2.1, suggesting a negative effect of induced K(+) currents on viral titer. We then blocked Kir2.1 currents with the selective blocker Ba(2+) during Lv-Kir2.1 production, and obtained about a 5-fold increase in the titer. Higher extracellular K(+) concentrations increased the titer of Lv-Kir2.1 about 9-fold. With a synapsin I promoter Ba(2+) increased the titer because of the moderate expression of Kir2.1 channel. Channel blockade also increased the titers of the lentivirus expressing Kv1.4 and TREK channels, but not HERG. The increase in titer correlated with the K(+) currents generated by the channels expressed.
In the production of lentivirus expressing K(+) channels, titers are increased by blocking K(+) currents in the virus-producing cells. This identifies a crucial issue in the production of viruses expressing membrane channels, and should facilitate basic and gene therapeutic research on channelopathies.
高效转导目的基因需要高滴度的慢病毒载体。在制备慢病毒载体过程中,目的蛋白不可避免地在病毒载体生产细胞中表达。这种表达可能会影响慢病毒载体的产量。
我们使用广泛活性的β-肌动蛋白启动子和神经元特异性突触素I启动子,制备了表达内向整流钾通道(Lv-Kir2.1)、其显性负性形式(Lv-Kir-DN)以及其他钾通道的慢病毒载体。
Lv-Kir-DN的滴度高于Lv-Kir2.1,提示诱导的钾电流对病毒滴度有负面影响。然后我们在生产Lv-Kir2.1期间用选择性阻滞剂Ba(2+)阻断Kir2.1电流,滴度提高了约5倍。较高的细胞外钾浓度使Lv-Kir2.1的滴度提高了约9倍。使用突触素I启动子时,由于Kir2.1通道的适度表达,Ba(2+)提高了滴度。通道阻断也提高了表达Kv1.4和TREK通道的慢病毒滴度,但对HERG通道无效。滴度的增加与所表达通道产生的钾电流相关。
在生产表达钾通道的慢病毒时,通过阻断病毒生产细胞中的钾电流可提高滴度。这确定了生产表达膜通道病毒中的一个关键问题,应有助于对通道病的基础研究和基因治疗研究。