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毕赤酵母作为分泌毒性蓖麻毒素嵌合体的宿主。

Pichia pastoris as a host for secretion of toxic saporin chimeras.

机构信息

Istituto di Biologia e Biotecnologia Agraria, Consiglio Nazionale delle Ricerche, via Bassini 15, Milan, Italy.

出版信息

FASEB J. 2010 Jan;24(1):253-65. doi: 10.1096/fj.08-118042. Epub 2009 Sep 28.

DOI:10.1096/fj.08-118042
PMID:19786581
Abstract

Most of the targeting moieties, such as antibody fragments or growth factor domains, used to construct targeted toxins for anticancer therapy derive from secretory proteins. These normally fold in the oxidative environment of the endoplasmic reticulum, and hence their folding in bacterial cells can be quite inefficient. For instance, only low amounts of properly folded antimetastatic chimera constituted by the amino-terminal fragment of human urokinase (ATF) fused to the plant ribosome-inactivating protein saporin could be recovered. ATF-saporin was instead secreted efficiently when expressed in eukaryotic cells protected from autointoxication with neutralizing anti-saporin antibodies. Pichia pastoris is a microbial eukaryotic host where these domains can fold into a transport-competent conformation and reach the extracellular medium. We show here that despite some host toxicity codon-usage optimization greatly increased the expression levels of active saporin but not those of an active-site mutant SAP-KQ in GS115 (his4) strain. The lack of any toxicity associated with expression of the latter confirmed that toxicity is due to saporin catalytic activity. Nevertheless, GS115 (his4) cells in flask culture secreted 3.5 mg/L of a histidine-tagged ATF-saporin chimera showing an IC(50) of 6 x 10(-11) M against U937 cells, thus demonstrating the suitability of this expression platform for secretion of toxic saporin-based chimeras.

摘要

大多数靶向部分,如抗体片段或生长因子结构域,用于构建抗癌治疗的靶向毒素,源自分泌蛋白。这些蛋白通常在内质网的氧化环境中折叠,因此在细菌细胞中的折叠效率可能相当低。例如,只有少量正确折叠的抗转移嵌合体可以回收,该嵌合体由人尿激酶(ATF)的氨基末端片段与植物核糖体失活蛋白相思豆毒素融合而成。当在真核细胞中表达时,ATF-相思豆毒素可以有效地分泌,这些细胞受到中和抗相思豆毒素抗体的自身中毒作用的保护。毕赤酵母是一种微生物真核宿主,这些结构域可以折叠成一种运输能力的构象,并到达细胞外介质。我们在这里表明,尽管存在一些宿主毒性,密码子使用优化极大地增加了活性相思豆毒素的表达水平,但对活性位点突变 SAP-KQ 在 GS115(his4)菌株中的表达水平没有影响。后者表达没有任何毒性,证实了毒性是由于相思豆毒素的催化活性所致。然而,在摇瓶培养中,GS115(his4)细胞分泌了 3.5 毫克/升的组氨酸标记的 ATF-相思豆毒素嵌合体,对 U937 细胞的 IC(50)为 6 x 10(-11)M,因此证明了这种表达平台适合分泌有毒的相思豆毒素嵌合体。

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