Istituto di Genetica Vegetale, Consiglio Nazionale delle Ricerche (CNR), via della Madonna Alta 130, 06128 Perugia, Italy.
Plant Mol Biol. 2011 Jul;76(3-5):427-41. doi: 10.1007/s11103-010-9676-6. Epub 2010 Aug 18.
Plastids are considered promising bioreactors for the production of recombinant proteins, but the knowledge of the mechanisms regulating foreign protein folding, targeting, and accumulation in these organelles is still incomplete. Here we demonstrate that a plant secretory signal peptide is able to target a plastome-encoded recombinant protein to the thylakoid membrane. The fusion protein zeolin with its native signal peptide expressed by tobacco (Nicotiana tabacum) transplastomic plants was directed into the chloroplast thylakoid membranes, whereas the zeolin mutant devoid of the signal peptide, Δzeolin, is instead accumulated in the stroma. We also show that zeolin folds in the thylakoid membrane where it accumulates as trimers able to form disulphide bonds. Disulphide bonds contribute to protein accumulation since zeolin shows a higher accumulation level with respect to stromal Δzeolin, whose folding is hampered as the protein accumulates at low amounts in a monomeric form and it is not oxidized. Thus, post-transcriptional processes seem to regulate the stability and accumulation of plastid-synthesized zeolin. The most plausible zeolin targeting mechanism to thylakoid is discussed herein.
质体被认为是生产重组蛋白的有前途的生物反应器,但对于调节这些细胞器中外源蛋白折叠、靶向和积累的机制的了解仍不完整。在这里,我们证明了一种植物分泌信号肽能够将质体编码的重组蛋白靶向到类囊体膜。具有天然信号肽的融合蛋白 zeolin 在烟草(Nicotiana tabacum)质体转化植物中表达,被引导进入叶绿体类囊体膜,而没有信号肽的 zeolin 突变体,Δzeolin,则积累在基质中。我们还表明,zeolin 在类囊体膜中折叠,在那里它作为三聚体积累,能够形成二硫键。二硫键有助于蛋白质的积累,因为与 stromal Δzeolin 相比,zeolin 的积累水平更高,后者的折叠受到阻碍,因为蛋白质以单体形式积累量低,并且不能被氧化。因此,转录后过程似乎调节质体合成的 zeolin 的稳定性和积累。本文讨论了最合理的 zeolin 靶向类囊体的机制。