Cell Culture and Fermentation Science, MedImmune, Gaithersburg, Maryland.
Antibody Discovery and Protein Engineering, MedImmune, Gaithersburg, Maryland.
Biotechnol Bioeng. 2019 Apr;116(4):793-804. doi: 10.1002/bit.26892. Epub 2019 Jan 18.
Cell line development (CLD) for biotherapeutics is a time- and resource-intensive process requiring the isolation and screening of large numbers of clones to identify high producers. Novel methods aimed at enhancing cell line screening efficiency using markers predictive of productivity early in the CLD process are needed to reliably generate high-yielding cell lines. To enable efficient and selective isolation of antibody expressing Chinese hamster ovary cells by fluorescence-activated cell sorting, we developed a strategy for the expression of antibodies containing a switchable membrane-associated domain to anchor an antibody to the membrane of the expressing cell. The switchable nature of the membrane domain is governed by the function of an orthogonal aminoacyl transfer RNA synthetase/tRNApyl pair, which directs a nonnatural amino acid (nnAA) to an amber codon encoded between the antibody and the membrane anchor. The process is "switchable" in response to nnAA in the medium, enabling a rapid transition between the surface display and secretion. We demonstrate that the level of cell surface display correlates with productivity and provides a method for enriching phenotypically stable high-producer cells. The strategy provides a means for selecting high-producing cells with potential applications to multiple biotherapeutic protein formats.
细胞系开发(CLD)是一个时间和资源密集型的过程,需要分离和筛选大量的克隆,以鉴定高产者。需要新的方法来提高细胞系筛选效率,使用在 CLD 过程早期具有生产力预测性的标记物,以可靠地产生高产细胞系。为了通过荧光激活细胞分选有效地和选择性地分离表达抗体的中国仓鼠卵巢细胞,我们开发了一种表达抗体的策略,该抗体包含一个可切换的膜相关结构域,将抗体锚定在表达细胞的膜上。膜结构域的可切换性质受正交氨酰基转移 RNA 合成酶/ tRNApyl 对的功能控制,该对指导非天然氨基酸(nnAA)到抗体和膜锚之间编码的琥珀色密码子。该过程可响应培养基中的 nnAA 进行“切换”,实现表面展示和分泌之间的快速转换。我们证明细胞表面展示的水平与生产力相关,并提供了一种富集表型稳定高产细胞的方法。该策略为选择具有多种生物治疗蛋白格式应用潜力的高产细胞提供了一种手段。