亲和标签的内在化使分泌衣藻蛋白的纯化成为可能。

IF 1.8 4区 生物学 Q3 GENETICS & HEREDITY
Anna Probst, Doreen Knochenhauer, Justus Niemeyer, Laura Fischer, Michael Schroda
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引用次数: 0

摘要

人们对建立微藻作为可持续生产高价值产品(如重组蛋白)的新平台非常感兴趣。许多人类治疗性蛋白必须被糖基化,这需要它们通过分泌途径进入培养基。虽然培养基中蛋白质的低复杂性有助于分泌重组蛋白的亲和纯化,但这对单细胞绿藻莱茵衣藻分泌的蛋白质具有挑战性。在束状利什曼原虫中,我们观察到c端暴露的亲和标签经常被截断,可能是由于蛋白水解活性。我们想知道这种情况是否也可能发生在衣藻中,并导致这种藻类分泌蛋白的亲和纯化困难。利用来自Bertholletia excelsa的富含蛋氨酸的2S白蛋白和Chlamydomonas产生和分泌的SARS-CoV-2刺突蛋白的外域,我们证明了当内化8xHis亲和标签时,它们可以通过Ni-NTA层析从培养基中有效地亲和纯化。这一发现为进一步开发衣藻作为可持续生产高价值重组蛋白的宿主迈出了重要的一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Internalization of affinity tags enables the purification of secreted Chlamydomonas proteins.

There is great interest in establishing microalgae as new platforms for the sustainable production of high-value products such as recombinant proteins. Many human therapeutic proteins must be glycosylated, which requires their passage through the secretory pathway into the culture medium. While the low complexity of proteins in the culture medium should facilitate affinity purification of secreted recombinant proteins, this has proven challenging for proteins secreted by the unicellular green alga Chlamydomonas reinhardtii. In Leishmania tarentulae, we observed that C-terminally exposed affinity tags are frequently truncated, presumably due to proteolytic activity. We wondered whether this might also occur in Chlamydomonas and contribute to the difficulties in affinity purification of secreted proteins in this alga. Using the methionine-rich 2S albumin from Bertholletia excelsa and the ectodomain of the SARS-CoV-2 spike protein produced and secreted in Chlamydomonas, we demonstrate that they can be efficiently affinity-purified from the culture medium by Ni-NTA chromatography when the 8xHis affinity tag is internalized. This finding represents an important step towards further development of Chlamydomonas as a host for the sustainable production of high-value recombinant proteins.

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来源期刊
Current Genetics
Current Genetics 生物-遗传学
CiteScore
6.00
自引率
0.00%
发文量
34
审稿时长
1 months
期刊介绍: Current Genetics publishes genetic, genomic, molecular and systems-level analysis of eukaryotic and prokaryotic microorganisms and cell organelles. All articles are peer-reviewed. The journal welcomes submissions employing any type of research approach, be it analytical (aiming at a better understanding), applied (aiming at practical applications), synthetic or theoretical. Current Genetics no longer accepts manuscripts describing the genome sequence of mitochondria/chloroplast of a small number of species. Manuscripts covering sequence comparisons and analyses that include a large number of species will still be considered.
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