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A Period-Extender Gene, pex, That Extends the Period of the Circadian Clock in the Cyanobacterium Synechococcus sp. Strain PCC 7942

机译:延长周期的基因,pex,延长了蓝藻Synechococcus sp。中的生物钟的周期。应变PCC 7942

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We cloned the pS1K1 plasmid in the process of apparently “complementing” a circadian clock mutant of cyanobacteriumSynechococcus sp. strain PCC 7942, SP22, which has a 22-h period (T. Kondo, N. F. Tsinoremas, S. S. Golden, C. H. Johnson, S. Kutsuna, and M. Ishiura, Science 266:1233–1236, 1994). Sequence analysis revealed that SP22 did not have a mutation in the genomic DNA segment carried on pS1K1, and thesp22 mutation was later found in a recently cloned new clock gene, kaiC. Therefore, the period-extender genepex that was carried on pS1K1 was a suppressor gene for thesp22 mutation. The pex gene encoded a protein of 148 amino acid residues. No meaningful homologs were found in DNA or protein databases including the Synechocystis genome database. The pex gene was transcribed from 129 and 164 bp upstream of the translation initiation codon as 0.6-kb transcripts. The Pex protein was detected as a fusion protein with a molecular mass of 15 kDa by the epitope tag fusion method using a c-Myc epitope tag. Disruption of the pex gene in wild-type cells shortened the period of the rhythms by 1 h, although it did not affect other properties of the rhythms, whereas its overexpression extended the period by 3 h with a concomitant reduction in the amplitude of the rhythms. In various clock mutants examined, overexpression caused arrhythmicity. Thus, Pex is likely to function as a modifier of the circadian clock in Synechococcus.
机译:我们克隆了pS1K1质粒,该过程显然是“补充”了蓝藻 Synechococcus sp的昼夜节律突变体。菌株PCC 7942,SP22,具有22小时的周期(T. Kondo,N。F. Tsinoremas,S。S. Golden,C。H. Johnson,S。Kutsuna和M. Ishiura,Science 266:1233-1236,1994)。序列分析表明,SP22在pS1K1携带的基因组DNA片段中没有突变,后来在最近克隆的新时钟基因 kaiC 中发现了 sp22 突变。因此,pS1K1携带的延长周期基因 pex sp22 突变的抑制基因。 pex 基因编码一个148个氨基酸残基的蛋白质。在DNA或蛋白质数据库,包括 Synechocystis 基因组数据库中,没有发现有意义的同源物。 pex 基因从翻译起始密码子上游的129和164 bp转录为0.6 kb的转录本。通过使用c-Myc表位标签的表位标签融合方法,将Pex蛋白检测为分子量为15kDa的融合蛋白。在野生型细胞中 pex 基因的破坏将节律的时间缩短了1 h,尽管它并没有影响节律的其他特性,而其过表达则将节律的时间延长了3 h。降低节奏幅度。在检查的各种时钟突变体中,过表达引起心律不齐。因此,Pex可能在 Synechococcus 中充当昼夜节律的调节器。

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