Lee Dong Wook, Lee Sumin, Oh Young Jun, Hwang Inhwan
Division of Molecular and Life Sciences, Pohang University of Science and Technology, Pohang 790-784, Korea.
Plant Physiol. 2009 Sep;151(1):129-41. doi: 10.1104/pp.109.140673. Epub 2009 Jul 1.
A large number of plastid proteins encoded by the nuclear genome are posttranslationally imported into plastids by at least two distinct mechanisms: the Toc159-dependent and Toc132/Toc120-dependent pathways. Light-induced photosynthetic proteins are imported through the Toc159-dependent pathway, whereas constitutive housekeeping plastid proteins are imported into plastids through the Toc132/Toc120 pathway. However, it remains unknown which features of the plastid protein transit peptide (TP) determine the import pathway. We have discovered sequence elements of the Rubisco small subunit TP (RbcS-tp) that play a role in determining import through the Toc159-dependent pathway in vivo. We generated multiple hybrid mutants using the RbcS-tp and the E1alpha-subunit of pyruvate dehydrogenase TP (E1alpha-tp) as representative peptides mediating import through the Toc159-dependent and Toc159-independent pathways, respectively. Import experiments using these hybrid mutants in wild-type and ppi2 mutant protoplasts revealed that multiple sequence motifs in the RbcS-tp independently contribute to Toc159-dependent protein import into chloroplasts. One of these motifs is the group of serine residues located in the N-terminal 12-amino acid segment and the other is the C-terminal T5 region of the RbcS-tp ranging from amino acid positions 41 to 49. Based on these findings, we propose that multiple sequence elements in the RbcS-tp contribute independently to Toc159-dependent import of proteins into chloroplasts.
依赖Toc159的途径和依赖Toc132/Toc120的途径。光诱导的光合蛋白通过依赖Toc159的途径导入,而组成型持家质体蛋白则通过Toc132/Toc120途径导入质体。然而,质体蛋白转运肽(TP)的哪些特征决定导入途径仍不清楚。我们发现了核酮糖-1,5-二磷酸羧化酶小亚基TP(RbcS-tp)的序列元件,它们在体内通过依赖Toc159的途径决定导入过程中发挥作用。我们使用RbcS-tp和丙酮酸脱氢酶TP的E1α亚基(E1α-tp)作为分别介导通过依赖Toc159和不依赖Toc159途径导入的代表性肽,生成了多个杂交突变体。在野生型和ppi2突变体原生质体中使用这些杂交突变体进行的导入实验表明,RbcS-tp中的多个序列基序独立地促进依赖Toc159的蛋白导入叶绿体。其中一个基序是位于N端12个氨基酸片段中的丝氨酸残基组,另一个是RbcS-tp从氨基酸位置41到49的C端T5区域。基于这些发现,我们提出RbcS-tp中的多个序列元件独立地促进依赖Toc159的蛋白导入叶绿体。