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一种基因优化策略,可提高毕赤酵母中完全功能 P-糖蛋白的产量。

A gene optimization strategy that enhances production of fully functional P-glycoprotein in Pichia pastoris.

机构信息

Department of Cell Biology and Biochemistry, and Center for Membrane Protein Research, Texas Tech University Health Sciences Center, Lubbock, Texas, United States of America.

出版信息

PLoS One. 2011;6(8):e22577. doi: 10.1371/journal.pone.0022577. Epub 2011 Aug 3.

Abstract

BACKGROUND

Structural and biochemical studies of mammalian membrane proteins remain hampered by inefficient production of pure protein. We explored codon optimization based on highly expressed Pichia pastoris genes to enhance co-translational folding and production of P-glycoprotein (Pgp), an ATP-dependent drug efflux pump involved in multidrug resistance of cancers.

METHODOLOGY/PRINCIPAL FINDINGS: Codon-optimized "Opti-Pgp" and wild-type Pgp, identical in primary protein sequence, were rigorously analyzed for differences in function or solution structure. Yeast expression levels and yield of purified protein from P. pastoris (∼130 mg per kg cells) were about three-fold higher for Opti-Pgp than for wild-type protein. Opti-Pgp conveyed full in vivo drug resistance against multiple anticancer and fungicidal drugs. ATP hydrolysis by purified Opti-Pgp was strongly stimulated ∼15-fold by verapamil and inhibited by cyclosporine A with binding constants of 4.2±2.2 µM and 1.1±0.26 µM, indistinguishable from wild-type Pgp. Maximum turnover number was 2.1±0.28 µmol/min/mg and was enhanced by 1.2-fold over wild-type Pgp, likely due to higher purity of Opti-Pgp preparations. Analysis of purified wild-type and Opti-Pgp by CD, DSC and limited proteolysis suggested similar secondary and ternary structure. Addition of lipid increased the thermal stability from T(m) ∼40 °C to 49 °C, and the total unfolding enthalpy. The increase in folded state may account for the increase in drug-stimulated ATPase activity seen in presence of lipids.

CONCLUSION

The significantly higher yields of protein in the native folded state, higher purity and improved function establish the value of our gene optimization approach, and provide a basis to improve production of other membrane proteins.

摘要

背景

哺乳动物膜蛋白的结构和生化研究仍然受到纯蛋白产量低的限制。我们探索了基于高表达毕赤酵母基因的密码子优化,以增强 P-糖蛋白(Pgp)的共翻译折叠和生产,Pgp 是一种与癌症多药耐药相关的 ATP 依赖性药物外排泵。

方法/主要发现:密码子优化的“Opti-Pgp”和野生型 Pgp 在一级蛋白序列上完全相同,我们严格分析了它们在功能或溶液结构上的差异。酵母表达水平和毕赤酵母(∼130 毫克/公斤细胞)中纯化蛋白的产量比野生型蛋白高约三倍。Opti-Pgp 赋予了对多种抗癌和杀真菌药物的完全体内耐药性。纯化的 Opti-Pgp 的 ATP 水解被维拉帕米强烈刺激约 15 倍,被环孢菌素 A 抑制,结合常数分别为 4.2±2.2 μM 和 1.1±0.26 μM,与野生型 Pgp 相同。最大周转率为 2.1±0.28 μmol/min/mg,比野生型 Pgp 提高了 1.2 倍,这可能是由于 Opti-Pgp 制剂的纯度更高。用 CD、DSC 和有限的蛋白水解分析纯化的野生型和 Opti-Pgp 表明它们具有相似的二级和三级结构。添加脂质可将热稳定性从 T(m)∼40°C 提高到 49°C,并增加总变性焓。折叠状态的增加可能解释了在存在脂质时观察到的药物刺激 ATP 酶活性的增加。

结论

在天然折叠状态下,蛋白质的产量显著提高,纯度提高,功能改善,这证明了我们基因优化方法的价值,并为提高其他膜蛋白的产量提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0fe/3149604/269c56addba5/pone.0022577.g001.jpg

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