首页> 外文期刊>Protein Expression and Purification >The titerless infected-cells preservation and scale-up (TIPS) method for large-scale production of NO-sensitive human soluble guanylate cyclase (sGC) from insect cells infected with recombinant baculovirus
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The titerless infected-cells preservation and scale-up (TIPS) method for large-scale production of NO-sensitive human soluble guanylate cyclase (sGC) from insect cells infected with recombinant baculovirus

机译:用于从重组杆状病毒感染的昆虫细胞中大规模生产NO敏感型人可溶性鸟苷酸环化酶(sGC)的无滴度感染细胞保存和放大(TIPS)方法

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Compounds capable of stimulating soluble guanylate cyclase (sGC) activity might become important new tools to treat hypertension. While rational design of these drugs would be aided by elucidation of the sGC three-dimensional structure and molecular mechanism of activation, such efforts also require quantities of high quality enzyme that are challenging to produce. We implemented the titerless infected-cells preservation and scale-up (TIPS) methodology to express the heterodimeric sGC. In the TIPS method, small-scale insect cell cultures were first incubated with a recombinant baculovirus which replicated in the cells. The baculovirus-infected insect cells (BIIC) were harvested and frozen prior to cell lysis and the subsequent escape of the newly replicated virus into the culture supernatant. Thawed BIIC stocks were ultimately used for subsequent scale up. As little as 1 mL of BIIC was needed to infect a 100-L insect cell culture, in contrast to the usual 1 L of high-titer, virus stock supernatants. The TIPS method eliminates the need and protracted time for titering virus supernatants, and provides stable, concentrated storage of recombinant baculovirus in the form of infected cells. The latter is particularly advantageous for virus stocks which are unstable, such as those for sGC, and provides a highly efficient alternative for baculovirus storage and expression. The TIPS process enabled efficient scale up to 100-L batches, each producing about 200 mg of active sGC. Careful adjustment of expression culture conditions over the course of several 100-L runs provided uniform starting titers, specific activity, and composition of contaminating proteins that facilitated development of a process that reproducibly yielded highly active, purified sGC.
机译:能够刺激可溶性鸟苷酸环化酶(sGC)活性的化合物可能会成为治疗高血压的重要新工具。尽管阐明sGC的三维结构和激活的分子机制将有助于合理设计这些药物,但这种努力还需要大量难以产生的高质量酶。我们实施了无滴度的感染细胞保存和放大(TIPS)方法来表达异二聚体sGC。在TIPS方法中,首先将小型昆虫细胞培养物与在细胞中复制的重组杆状病毒一起孵育。收获杆状病毒感染的昆虫细胞(BIIC)并冷冻,然后裂解细胞,随后将新复制的病毒逃逸到培养上清液中。解冻后的BIIC库存最终用于后续扩大规模。与通常的1 L高滴度病毒原种上清液相比,感染100 L昆虫细胞培养液仅需要1 mL BIIC。 TIPS方法消除了滴定病毒上清液的需要和延长的时间,并以感染细胞的形式稳定,集中地存储重组杆状病毒。后者对于不稳定的病毒库(例如sGC)尤其有利,并为杆状病毒的存储和表达提供了高效的替代方法。 TIPS工艺可有效放大至100-L批次,每批次可生产约200 mg活性sGC。在数个100 L的运行过程中,对表达培养条件的仔细调整可提供一致的起始滴定度,比活性和污染蛋白的组成,从而促进了可再生生产高活性,纯化的sGC的过程的发展。

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