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AUG 起始密码子上游核苷酸对精子细胞翻译起始效率的影响。

The effect of the nucleotides immediately upstream of the AUG start codon on the efficiency of translation initiation in sperm cells.

机构信息

Key Laboratory of Resource Biology and Biotechnology in Western China (Ministry of Education), College of Life Science, Northwest University, Xi'an, 710069, China.

出版信息

Plant Reprod. 2022 Sep;35(3):221-231. doi: 10.1007/s00497-022-00442-7. Epub 2022 Jun 8.

Abstract

It is widely known that an optimal nucleotide sequence context immediately upstream of the AUG start codon greatly improves the efficiency of translation initiation of mRNA in mammalian and plant somatic cells, which in turn increases protein levels. However, it is still unclear whether a similar regulatory mechanism is also present in highly differentiated cells. Here, we surveyed this issue in Arabidopsis thaliana sperm cells and found that the sequence context-mediated regulation of translation initiation in sperm cells is generally similar to that in somatic cells. A simple motif of four adenine nucleotides at positions - 1 to - 4 greatly improved the efficiency of translation initiation, and when the motif was present there, translation was even initiated at some non-AUG codons in sperm cells. However, unlike that in mammalian cells, a mainly effective nucleotide site to regulate the efficiency of translation initiation was not present at positions - 1 to - 4 in sperm cells. Meanwhile, different from somatic cells, sperm cells did not use eukaryotic translation initiation factor 1 to regulate the efficiency in a poor context consisting of the lowest frequency nucleotides. All these results contribute to our understanding of the cytoplasmic event of translation initiation in highly differentiated sperm cells.

摘要

众所周知,AUG 起始密码子上游的最优核苷酸序列环境极大地提高了哺乳动物和植物体细胞中 mRNA 翻译起始的效率,从而增加了蛋白质水平。然而,在高度分化的细胞中是否也存在类似的调控机制尚不清楚。在这里,我们在拟南芥精子细胞中调查了这个问题,发现精子细胞中转录起始的序列环境介导的调控与体细胞中的调控大致相似。在位置-1 到-4 的四个腺嘌呤核苷酸的简单基序极大地提高了翻译起始的效率,并且当存在该基序时,在精子细胞中甚至可以在一些非 AUG 密码子处起始翻译。然而,与哺乳动物细胞不同的是,在精子细胞中,不存在主要的有效核苷酸位点来调节起始密码子-1 到-4 位置处的翻译起始效率。同时,与体细胞不同的是,精子细胞不使用真核翻译起始因子 1 来调节由最低频率核苷酸组成的较差环境中的效率。所有这些结果有助于我们理解高度分化的精子细胞中翻译起始的细胞质事件。

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