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Assembly Secretion and Vacuolar Delivery of a Hybrid Immunoglobulin in Plants

机译:混合免疫球蛋白在植物中的组装分泌和液泡递送

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摘要

Secretory immunoglobulin (Ig) A is a decameric Ig composed of four α-heavy chains, four light chains, a joining (J) chain, and a secretory component (SC). The heavy and light chains form two tetrameric Ig molecules that are joined by the J chain and associate with the SC. Expression of a secretory monoclonal antibody in tobacco (Nicotiana tabacum) has been described: this molecule (secretory IgA/G [SIgA/G]) was modified by having a hybrid heavy chain sequence consisting of IgG γ-chain domains linked to constant region domains of an IgA α-chain. In tobacco, about 70% of the protein assembles to its final, decameric structure. We show here that SIgA/G assembly and secretion are slow, with only approximately 10% of the newly synthesized molecules being secreted after 24 h and the bulk probably remaining in the endoplasmic reticulum. In addition, a proportion of SIgA/G is delivered to the vacuole as at least partially assembled molecules by a process that is blocked by the membrane traffic inhibitor brefeldin A. Neither the SC nor the J chain are responsible for vacuolar delivery, because IgA/G tetramers have the same fate. The parent IgG tetrameric molecule, containing wild-type γ-heavy chains, is instead secreted rapidly and efficiently. This strongly suggests that intracellular retention and vacuolar delivery of IgA/G is due to the α-domains present in the hybrid α/γ-heavy chains and indicates that the plant secretory system may partially deliver to the vacuole recombinant proteins expected to be secreted.
机译:分泌型免疫球蛋白(Ig)A是由四个α重链,四个轻链,一个连接(J)链和一个分泌成分(SC)组成的十聚体Ig。重链和轻链形成两个四聚体Ig分子,它们由J链连接并与SC缔合。已经描述了一种分泌型单克隆抗体在烟草(烟草)中的表达:该分子(分泌型IgA / G [SIgA / G])通过具有由与恒定区结构域连接的IgGγ链结构域组成的杂合重链序列进行修饰IgAα链的结构。在烟草中,约70%的蛋白质组装成最终的十聚体结构。我们在这里表明,SIgA / G的组装和分泌是缓慢的,只有大约10%的新合成分子在24小时后被分泌出来,而且大部分可能保留在内质网中。此外,一部分SIgA / G通过膜运输抑制剂布雷菲德菌素A阻断的过程作为至少部分组装的分子作为至少部分组装的分子传递到液泡中。SC和J链都不负责液泡的传递,因为IgA / G四聚体的命运相同。相反,含有野生型γ重链的亲本IgG四聚体分子可以快速有效地分泌。这有力地表明,IgA / G的细胞内滞留和液泡传递是由于杂合的α/γ重链中存在的α结构域引起的,并表明植物分泌系统可能会将预期分泌的重组蛋白部分传递至液泡。

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