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玉米叶绿体中23S、4.5S和5S rRNA的共转录与加工

Cotranscription and processing of 23S, 4.5S and 5S rRNA in chloroplasts from Zea mays.

作者信息

Strittmatter G, Kössel H

出版信息

Nucleic Acids Res. 1984 Oct 25;12(20):7633-47. doi: 10.1093/nar/12.20.7633.

Abstract

The termini of rRNA processing intermediates and of mature rRNA species encoded by the 3' terminal region of 23S rDNA, by 4.5S rDNA, by the 5' terminal region of 5S rDNA and by the 23S/4.5S/5S intergenic regions from Zea mays chloroplast DNA were determined by using total RNA isolated from maize chloroplasts and 32P-labelled rDNA restriction fragments of these regions for nuclease S1 and primer extension mapping. Several processing sites detectable by both 3' and 5' terminally labelled probes could be identified and correlated to the secondary structure for the 23S/4.5S intergenic region. The complete 4.5S/5S intergenic region can be reverse transcribed and a common processing site for maturation of 4.5S and 5S rRNA close to the 3' end of 4.5S rRNA was detected. It is therefore concluded that 23S, 4.5S and 5S rRNA are cotranscribed.

摘要

通过使用从玉米叶绿体中分离的总RNA以及这些区域的32P标记的rDNA限制性片段进行核酸酶S1和引物延伸图谱分析,确定了玉米叶绿体DNA中23S rDNA 3'末端区域、4.5S rDNA、5S rDNA 5'末端区域以及23S/4.5S/5S基因间隔区所编码的rRNA加工中间体和成熟rRNA种类的末端。通过3'和5'末端标记的探针均可检测到的几个加工位点得以确定,并与23S/4.5S基因间隔区的二级结构相关联。完整的4.5S/5S基因间隔区可以被逆转录,并且在靠近4.5S rRNA 3'末端处检测到一个4.5S和5S rRNA成熟的共同加工位点。因此得出结论,23S、4.5S和5S rRNA是共转录的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a87/320190/e344fc2d6e6e/nar00338-0033-a.jpg

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