Chu Chiung-Chih, Li Hsou-Min
Institute of Molecular Biology, Academia Sinica Taipei, Taiwan.
Front Plant Sci. 2015 Sep 4;6:690. doi: 10.3389/fpls.2015.00690. eCollection 2015.
Leucoplasts are important organelles for the synthesis and storage of starch, lipids and proteins. However, molecular mechanism of protein import into leucoplasts and how it differs from that of import into chloroplasts remain unknown. We used pea seedlings for both chloroplast and leucoplast isolations to compare within the same species. We further optimized the isolation and import conditions to improve import efficiency and to permit a quantitative comparison between the two plastid types. The authenticity of the import was verified using a mitochondrial precursor protein. Our results show that, when normalized to Toc75, most translocon proteins are less abundant in leucoplasts than in chloroplasts. A precursor shown to prefer the receptor Toc132 indeed had relatively more similar import efficiencies between chloroplasts and leucoplasts compared to precursors that prefer Toc159. Furthermore we found two precursors that exhibited very high import efficiency into leucoplasts. Their transit peptides may be candidates for delivering transgenic proteins into leucoplasts and for analyzing motifs important for leucoplast import.
白色体是淀粉、脂质和蛋白质合成与储存的重要细胞器。然而,蛋白质导入白色体的分子机制以及它与导入叶绿体的机制有何不同仍不清楚。我们使用豌豆幼苗同时分离叶绿体和白色体,以便在同一物种内进行比较。我们进一步优化了分离和导入条件,以提高导入效率,并允许对两种质体类型进行定量比较。使用线粒体前体蛋白验证了导入的真实性。我们的结果表明,以Toc75进行标准化时,大多数转运体蛋白在白色体中的丰度低于叶绿体。与偏好Toc159的前体相比,一个显示出偏好受体Toc132的前体在叶绿体和白色体之间确实具有相对更相似的导入效率。此外,我们发现了两种前体在导入白色体时表现出非常高的效率。它们的转运肽可能是将转基因蛋白导入白色体以及分析对白色体导入重要的基序的候选者。