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利用 KlADH3 启动子在酵母 Kluyveromyces lactis 中定量生产鼠源 PDE5A 同工型。

Use of the KlADH3 promoter for the quantitative production of the murine PDE5A isoforms in the yeast Kluyveromyces lactis.

机构信息

Department of Biology and Biotechnology "C. Darwin", Sapienza University of Rome, Piazzale A. Moro 5, 00185, Rome, Italy.

Department of Anatomical, Histological, Forensic, and Orthopaedic Sciences, Sapienza University of Rome, Piazzale A. Moro 5, 00185, Rome, Italy.

出版信息

Microb Cell Fact. 2017 Sep 22;16(1):159. doi: 10.1186/s12934-017-0779-5.

Abstract

BACKGROUND

Phosphodiesterases (PDE) are a superfamily of enzymes that hydrolyse cyclic nucleotides (cAMP/cGMP), signal molecules in transduction pathways regulating crucial aspects of cell life. PDEs regulate the intensity and duration of the cyclic nucleotides signal modulating the downstream biological effect. Due to this critical role associated with the extensive distribution and multiplicity of isozymes, the 11 mammalian families (PDE1 to PDE11) constitute key therapeutic targets. PDE5, one of these cGMP-specific hydrolysing families, is the molecular target of several well known drugs used to treat erectile dysfunction and pulmonary hypertension. Kluyveromyces lactis, one of the few yeasts capable of utilizing lactose, is an attractive host alternative to Saccharomyces cerevisiae for heterologous protein production. Here we established K. lactis as a powerful host for the quantitative production of the murine PDE5 isoforms.

RESULTS

Using the promoter of the highly expressed KlADH3 gene, multicopy plasmids were engineered to produce the native and recombinant Mus musculus PDE5 in K. lactis. Yeast cells produced large amounts of the purified A1, A2 and A3 isoforms displaying K, V and Sildenafil inhibition values similar to those of the native murine enzymes. PDE5 whose yield was nearly 1 mg/g wet weight biomass for all three isozymes (30 mg/L culture), is well tolerated by K. lactis cells without major growth deficiencies and interferences with the endogenous cAMP/cGMP signal transduction pathways.

CONCLUSIONS

To our knowledge, this is the first time that the entire PDE5 isozymes family containing both regulatory and catalytic domains has been produced at high levels in a heterologous eukaryotic organism. K. lactis has been shown to be a very promising host platform for large scale production of mammalian PDEs for biochemical and structural studies and for the development of new specific PDE inhibitors for therapeutic applications in many pathologies.

摘要

背景

磷酸二酯酶(PDE)是一个超家族的酶,可水解环核苷酸(cAMP/cGMP),这是调节细胞生命关键方面的信号转导途径中的信号分子。PDE 调节环核苷酸信号的强度和持续时间,从而调节下游的生物学效应。由于与广泛分布和同工酶多样性相关的这种关键作用,11 种哺乳动物家族(PDE1 至 PDE11)构成了关键的治疗靶标。PDE5 是这些 cGMP 特异性水解家族之一,是几种用于治疗勃起功能障碍和肺动脉高压的知名药物的分子靶标。乳克鲁维酵母是少数几种能够利用乳糖的酵母之一,是替代酿酒酵母用于异源蛋白生产的有吸引力的宿主替代物。在这里,我们将乳克鲁维酵母建立为定量生产鼠源 PDE5 同工型的强大宿主。

结果

利用高度表达的 KlADH3 基因的启动子,构建了多拷贝质粒,用于在乳克鲁维酵母中生产天然和重组 Mus musculus PDE5。酵母细胞大量生产纯化的 A1、A2 和 A3 同工型,其 K、V 和西地那非抑制值与天然鼠源酶相似。对于所有三种同工型,PDE5 的产量接近 1mg/g 湿重生物质(30mg/L 培养物),对乳克鲁维酵母细胞的耐受性良好,没有主要的生长缺陷,并且不会干扰内源性 cAMP/cGMP 信号转导途径。

结论

据我们所知,这是首次在异源真核生物中高水平生产包含调节和催化结构域的整个 PDE5 同工型家族。乳克鲁维酵母已被证明是用于生化和结构研究以及开发用于治疗许多病理疾病的新的特异性 PDE 抑制剂的哺乳动物 PDE 大规模生产的非常有前途的宿主平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3a6/5610471/0a0d1ba63a34/12934_2017_779_Fig1_HTML.jpg

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