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Arabidopsis Nuclear-Encoded Plastid Transit Peptides Contain Multiple Sequence Subgroups with Distinctive Chloroplast-Targeting Sequence Motifs

机译:拟南芥核编码的质体转运肽包含具有不同叶绿体靶向序列基序的多个序列亚组。

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摘要

The N-terminal transit peptides of nuclear-encoded plastid proteins are necessary and sufficient for their import into plastids, but the information encoded by these transit peptides remains elusive, as they have a high sequence diversity and lack consensus sequences or common sequence motifs. Here, we investigated the sequence information contained in transit peptides. Hierarchical clustering on transit peptides of 208 plastid proteins showed that the transit peptide sequences are grouped to multiple sequence subgroups. We selected representative proteins from seven of these multiple subgroups and confirmed that their transit peptide sequences are highly dissimilar. Protein import experiments revealed that each protein contained transit peptide–specific sequence motifs critical for protein import into chloroplasts. Bioinformatics analysis identified sequence motifs that were conserved among members of the identified subgroups. The sequence motifs identified by the two independent approaches were nearly identical or significantly overlapped. Furthermore, the accuracy of predicting a chloroplast protein was greatly increased by grouping the transit peptides into multiple sequence subgroups. Based on these data, we propose that the transit peptides are composed of multiple sequence subgroups that contain distinctive sequence motifs for chloroplast targeting.
机译:核编码质体蛋白的N末端转运肽对于将其导入质体是必要和充分的,但是这些转运肽编码的信息仍然难以捉摸,因为它们具有较高的序列多样性,并且缺乏共有序列或共有序列基序。在这里,我们调查了转运肽中包含的序列信息。 208种质体蛋白转运肽的层次聚类表明转运肽序列被分组为多个序列亚组。我们从这些多个亚组中的七个选择了代表性的蛋白质,并证实了它们的转运肽序列高度不同。蛋白质导入实验表明,每种蛋白质均含有转运肽特异的序列基序,对于蛋白质导入叶绿体至关重要。生物信息学分析确定了在确定的亚组成员之间保守的序列基序。通过两种独立方法鉴定的序列基序几乎相同或明显重叠。此外,通过将转运肽分组为多个序列亚组,大大提高了预测叶绿体蛋白的准确性。基于这些数据,我们建议转运肽由多个序列亚组组成,这些亚组包含用于叶绿体靶向的独特序列基序。

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