Vader Anna, Johansen Steinar, Nielsen Henrik
Department of Medical Biochemistry and Genetics, The Panum Institute, Copenhagen, Denmark.
Eur J Biochem. 2002 Dec;269(23):5804-12. doi: 10.1046/j.1432-1033.2002.03283.x.
During starvation induced encystment, cells of the myxomycete Didymium iridis accumulate a 7.5-kb RNA that is the result of alternative processing of pre-rRNA. The 5' end corresponds to an internal processing site cleaved by the group I-like ribozyme DiGIR1, located within the twin-ribozyme intron Dir.S956-1. The RNA retains the majority of Dir.S956-1 including the homing endonuclease gene and a small spliceosomal intron, the internal transcribed spacers ITS1 and ITS2, and the large subunit rRNA lacking its two group I introns. The formation of this RNA implies cleavage by DiGIR1 in a new RNA context, and presents a new example of the cost to the host of intron load. This is because the formation of the 7.5-kb RNA is incompatible with the formation of functional ribosomal RNA from the same transcript. In the formation of the 7.5-kb RNA, DiGIR1 catalysed cleavage takes place without prior splicing performed by DiGIR2. This contrasts with the processing order leading to mature rRNA and I-DirI mRNA in growing cells, suggesting an interplay between the two ribozymes of a twin-ribozyme intron.
在饥饿诱导的包囊化过程中,黏菌双孢绒泡菌的细胞积累了一种7.5 kb的RNA,它是前体rRNA可变加工的产物。其5'端对应于一个由类I型核酶DiGIR1切割的内部加工位点,该核酶位于双核酶内含子Dir.S956 - 1内。该RNA保留了Dir.S956 - 1的大部分,包括归巢内切酶基因和一个小的剪接体内含子、内部转录间隔区ITS1和ITS2,以及缺少两个I类内含子的大亚基rRNA。这种RNA的形成意味着DiGIR1在新的RNA环境中进行切割,并且呈现了内含子负荷对宿主造成代价的一个新例子。这是因为7.5 kb RNA的形成与从同一转录本形成功能性核糖体RNA不相容。在7.5 kb RNA的形成过程中,DiGIR1催化的切割在DiGIR2进行剪接之前就发生了。这与生长细胞中导致成熟rRNA和I - DirI mRNA的加工顺序形成对比,表明双核酶内含子的两种核酶之间存在相互作用。