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Engineering host cell lines to reduce terminal sialylation of secreted antibodies

机译:工程宿主细胞系以减少分泌抗体的末端唾液酸化

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摘要

Covalently-linked glycans on proteins have many functional roles, some of which are still not completely understood. Antibodies have a very specific glycan modification in the Fc region that is required for mediating immune effector functions. These Fc glycans are typically highly heterogeneous in structure, and this heterogeneity is influenced by many factors, such as type of cellular host and rate of Ab secretion. Glycan heterogeneity can affect the Fc-dependent activities of antibodies. It has been shown recently that increased Fc sialylation can result in decreased binding to immobilized antigens and some Fcγ receptors, as well as decreased antibody-dependent cell-mediated cytotoxicity (ADCC) activity. In contrast, increased Fc sialylation enhances the anti-inflammatory activity of antibodies. To produce antibodies with increased effector functions, we developed host cell lines that would limit the degree of sialylation of recombinantly-expressed antibodies. Towards this end, the catalytic domain of the Arthrobacter ureafaciens sialidase (sialidase A) was engineered for secreted expression in mammalian cell lines. Expression of this sialidase A gene in mammalian cells resulted in secreted expression of soluble enzyme that was capable of removing sialic acid from antibodies secreted into the medium. Purified antibodies secreted from these cells were found to possess very low levels of sialylation compared with the same antibodies purified from unmodified host cells. The low sialylated antibodies exhibited similar binding affinity to soluble antigens, improved ADCC activity, and they possessed pharmacokinetic properties comparable to their more sialylated counterparts. Further, it was observed that the amount of sialidase A expressed was sufficient to thoroughly remove sialic acid from Abs made in high-producing cell lines. Thus, engineering host cells to express sialidase A enzyme can be used to produce recombinant antibodies with very low levels of sialylation.
机译:蛋白质上的共价连接的聚糖具有许多功能性作用,其中一些仍未完全理解。抗体在Fc区具有非常特异性的聚糖修饰,这是介导免疫效应子功能所必需的。这些Fc聚糖通常在结构上高度异质,并且这种异质性受许多因素影响,例如细胞宿主的类型和Ab分泌的速率。聚糖异质性会影响抗体的Fc依赖性活性。最近显示,增加的Fc唾液酸化作用可导致与固定化抗原和某些Fcγ受体的结合减少,以及抗体依赖性细胞介导的细胞毒性(ADCC)活性降低。相反,增加的Fc唾液酸化作用增强了抗体的抗炎活性。为了产生具有增强的效应子功能的抗体,我们开发了将限制重组表达抗体的唾液酸化程度的宿主细胞系。为此,工程改造了尿素节杆菌唾液酸酶(唾液酸酶A)的催化结构域,以在哺乳动物细胞系中进行分泌表达。该唾液酸酶A基因在哺乳动物细胞中的表达导致可溶性酶的分泌表达,该可溶性酶能够从分泌到培养基中的抗体中除去唾液酸。与从未经修饰的宿主细胞纯化的相同抗体相比,发现从这些细胞分泌的纯化的抗体具有非常低的唾液酸化水平。低唾液酸化抗体表现出与可溶性抗原相似的结合亲和力,改善了ADCC活性,并且它们具有与更多唾液酸化对应物相当的药代动力学特性。此外,观察到唾液酸酶A的表达量足以从高产细胞系中制备的Abs中彻底除去唾液酸。因此,改造宿主细胞以表达唾液酸酶A酶可用于产生唾液酸化水平非常低的重组抗体。

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