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Na-butyrate increases the production and α26-sialylation of recombinant interferon-γ expressed by α26- sialyltransferase engineered CHO cells

机译:丁酸钠可增加α26-唾液酸转移酶改造的CHO细胞表达的重组干扰素-γ的产生和α26-唾液酸化

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摘要

A non-human like glycosylation pattern in human recombinant glycoproteins expressed by animal cells may compromise their use as therapeutic drugs. In order to correct the CHO glycosylation machinery, a CHO cell line producing recombinant human interferon- γ (IFN) was transformed to replace the endogenous pseudogene with a functional copy of the enzyme α2,6-sialyltransferase (α2,6-ST). Both the parental and the modified CHO cell line were propagated in serum-free batch culture with or without 1 mM sodium butyrate. Although Na-butyrate inhibited cell growth, IFN concentration was increased twofold. The IFN sialylation status was determined using linkage specific sialidases and HPLC. Under non- induced conditions, IFN expressed by α2,6-engineered cells contained 68% of the total sialic acids in the α2,6- conformation and the overall molar ratio of sialic acids to IFN was 2.3. Sodium butyrate addition increased twofold the molar ratio of total sialic acids to IFN and 82% of total sialic acids on IFN were in the α2,6-conformation. In contrast, no effect of the sodium butyrate was noticed on the sialylation of the IFN secreted by the α2,6-ST deficient parental cell line. This study deals for the first time with the effect of Na-butyrate on CHO cells engineered to produce human like sialylation.
机译:动物细胞表达的人重组糖蛋白中的非人样糖基化模式可能会损害其作为治疗药物的用途。为了纠正CHO糖基化机制,将产生重组人干扰素-γ(IFN)的CHO细胞系转化为功能性拷贝的α2,6-唾液酸转移酶(α2,6-ST)替代内源假基因。在有或没有1 mM丁酸钠的无血清分批培养中繁殖亲本和修饰的CHO细胞系。尽管丁酸钠可抑制细胞生长,但IFN的浓度却增加了两倍。使用连接特异性唾液酸酶和HPLC确定IFN唾液酸化状态。在非诱导条件下,由α2,6-工程细胞表达的IFN包含α2,6-构象中总唾液酸的68%,唾液酸与IFN的总摩尔比为2.3。丁酸钠的添加使总唾液酸与IFN的摩尔比增加了两倍,并且IFN上总唾液酸的82%处于α2,6-构象。相反,没有观察到丁酸钠对α2,6-ST缺陷型亲代细胞系分泌的IFN的唾液酸化作用。这项研究首次涉及丁酸钠对经工程改造可产生人唾液酸化作用的CHO细胞的作用。

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