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毕赤酵母通过铜在铜依赖性酶生产中对可用性和生长抑制的权衡。

The trade-off of availability and growth inhibition through copper for the production of copper-dependent enzymes by Pichia pastoris.

作者信息

Balakumaran Palanisamy Athiyaman, Förster Jan, Zimmermann Martin, Charumathi Jayachandran, Schmitz Andreas, Czarnotta Eik, Lehnen Mathias, Sudarsan Suresh, Ebert Birgitta E, Blank Lars Mathias, Meenakshisundaram Sankaranarayanan

机构信息

Centre for Biotechnology, Anna University, Sardar Patel Road, Guindy, Chennai, 600025, India.

iAMB - Institute of Applied Microbiology, ABBt - Aachen Biology and Biotechnology, RWTH Aachen University, Worringerweg 1, 52074, Aachen, Germany.

出版信息

BMC Biotechnol. 2016 Feb 20;16:20. doi: 10.1186/s12896-016-0251-3.

Abstract

BACKGROUND

Copper is an essential chemical element for life as it is a part of prosthetic groups of enzymes including super oxide dismutase and cytochrome c oxidase; however, it is also toxic at high concentrations. Here, we present the trade-off of copper availability and growth inhibition of a common host used for copper-dependent protein production, Pichia pastoris.

RESULTS

At copper concentrations ranging from 0.1 mM (6.35 mg/L) to 2 mM (127 mg/L), growth rates of 0.25 h(-1) to 0.16 h(-1) were observed with copper uptake of as high as 20 mgcopper/gCDW. The intracellular copper content was estimated by subtracting the copper adsorbed on the cell wall from the total copper concentration in the biomass. Higher copper concentrations led to stronger cell growth retardation and, at 10 mM (635 mg/L) and above, to growth inhibition. To test the determined copper concentration range for optimal recombinant protein production, a laccase gene from Aspergillus clavatus [EMBL: EAW07265.1] was cloned under the control of the constitutive glyceraldehyde-3-phosphate (GAP) dehydrogenase promoter for expression in P. pastoris. Notably, in the presence of copper, laccase expression improved the specific growth rate of P. pastoris. Although copper concentrations of 0.1 mM and 0.2 mM augmented laccase expression 4 times up to 3 U/mL compared to the control (0.75 U/mL), while higher copper concentrations resulted in reduced laccase production. An intracellular copper content between 1 and 2 mgcopper/gCDW was sufficient for increased laccase activity. The physiology of the yeast could be excluded as a reason for the stop of laccase production at moderate copper concentrations as no flux redistribution could be observed by (13)C-metabolic flux analysis.

CONCLUSION

Copper and its pivotal role to sustain cellular functions is noteworthy. However, knowledge on its cellular accumulation, availability and distribution for recombinant protein production is limited. This study attempts to address one such challenge, which revealed the fact that intracellular copper accumulation influenced laccase production and should be considered for high protein expression of copper-dependent enzymes when using P. pastoris. The results are discussed in the context of P. pastoris as a general host for copper -dependent enzyme production.

摘要

背景

铜是生命必需的化学元素,它是包括超氧化物歧化酶和细胞色素c氧化酶在内的酶的辅基的一部分;然而,高浓度时它也具有毒性。在此,我们展示了用于铜依赖性蛋白生产的常见宿主——巴斯德毕赤酵母中铜可用性与生长抑制之间的权衡。

结果

在0.1 mM(6.35 mg/L)至2 mM(127 mg/L)的铜浓度范围内,观察到生长速率在0.25 h⁻¹至0.16 h⁻¹之间,铜摄取量高达20 mg铜/g细胞干重。通过从生物质中的总铜浓度中减去吸附在细胞壁上的铜来估算细胞内铜含量。较高的铜浓度导致更强的细胞生长迟缓,在10 mM(635 mg/L)及以上时导致生长抑制。为了测试确定的最佳重组蛋白生产铜浓度范围,将来自棒曲霉的漆酶基因[EMBL: EAW07265.1]克隆到组成型甘油醛 - 3 - 磷酸(GAP)脱氢酶启动子的控制下,用于在巴斯德毕赤酵母中表达。值得注意的是,在有铜的情况下,漆酶表达提高了巴斯德毕赤酵母的比生长速率。尽管与对照(0.75 U/mL)相比,0.1 mM和0.2 mM的铜浓度使漆酶表达增加了4倍,达到3 U/mL,但较高的铜浓度导致漆酶产量降低。细胞内铜含量在1至2 mg铜/g细胞干重之间足以提高漆酶活性。酵母生理学不能作为中等铜浓度下漆酶生产停止的原因,因为通过¹³C - 代谢通量分析未观察到通量重新分布。

结论

铜及其在维持细胞功能中的关键作用值得关注。然而,关于其在重组蛋白生产中的细胞积累、可用性和分布的知识有限。本研究试图应对这样一个挑战,该挑战揭示了细胞内铜积累影响漆酶生产这一事实,并且在使用巴斯德毕赤酵母进行铜依赖性酶的高蛋白表达时应予以考虑。结果在巴斯德毕赤酵母作为铜依赖性酶生产的通用宿主的背景下进行了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f97/4761204/aea33959e090/12896_2016_251_Fig1_HTML.jpg

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