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Replication-dependent and independent regulation of HMG expression during the cell cycle and conjugation in Tetrahymena.

机译:在四膜虫的细胞周期和结合过程中HMG表达的复制依赖和独立调节。

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摘要

Two abundant high-mobility-group (HMG)-like proteins, HMG B and HMG C, exist in the ciliated protozoan, Tetrahymena thermophila. Of these, HMG C is specific to transcriptionally active macronuclei, while HMG B is found in macronuclei and in transcriptionally inactive micronuclei [1]. Using Northern and in situ analyses, we show that the genes encoding HMG B and HMG C are not expressed uniformly throughout the vegetative cycle or during the sexual process, conjugation. Elevated expression of both genes is observed during macronuclear S phase of the vegetative cycle and during endoreplication of developing new macronuclei in later stages of conjugation. Interruption of any of these macronuclear DNA replications by aphidicolin leads to a rapid drop in the message levels of HMG B and HMG C. These results resemble what is typically observed for replication-dependent nucleosomal histones and differ from the apparent lack of cell cycle regulation observed for HMG genes in vertebrates. A specific-induction of HMG B mRNA is also observed early in conjugation and during this interval, inhibition of micronuclear DNA synthesis by aphidicolin does not affect the message level of HMG B. Thus, during conjugation, expression of HMG B shows both replication-dependent and independent regulation. Results similar to these with HMG B are obtained with histone H4II gene, a gene which is also expressed during micro- and macronuclear S phases during the vegetative cycle. These results demonstrate surprising complexity in the expression of HMG genes in Tetrahymena and lend support to the hypothesis that cell cycle regulation plays an important role in directing HMG-like proteins to the appropriate nucleus [2]. Interestingly, expression of neither HMG gene is perfectly synchronized with that of histone H4II gene during the developmental program suggesting that important differences exist between vegetatively growing (cell cycle control) and conjugating (developmental control) cells.
机译:纤毛虫原生动物四膜虫嗜热菌中存在两种丰富的高迁移率族(HMG)样蛋白,HMG B和HMGC。其中,HMG C特异于转录活性大核,而HMG B存在于大核和无转录微核中[1]。使用Northern和原位分析,我们表明,编码HMG B和HMG C的基因在整个营养周期或性过程,共轭过程中均未统一表达。在营养循环的大核S期和结合后期,在发育新大核的内复制过程中都观察到了两个基因的表达升高。蚜虫可阻断任何这些大核DNA复制,导致HMG B和HMG C的信息水平迅速下降。这些结果类似于复制依赖性核小体组蛋白通常观察到的结果,并且与明显缺乏的细胞周期调控不同用于脊椎动物中的HMG基因。在接合初期也观察到HMG B mRNA的特异性诱导,在此间隔期间,蚜虫碱对微核DNA合成的抑制不会影响HMG B的信息水平。因此,在接合期间,HMG B的表达显示出两种复制依赖性和独立监管。用组蛋白H4II基因获得了与HMG B相似的结果,该基因在营养周期的微核和大核S期也表达。这些结果证明了四膜虫中HMG基因表达的惊人复杂性,并支持了细胞周期调节在将HMG样蛋白引导至适当细胞核中起重要作用的假说[2]。有趣的是,在发育程序中,两个HMG基因的表达均与组蛋白H4II基因的表达完全同步,这表明营养生长(细胞周期控制)和接合(发育控制)细胞之间存在重要差异。

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