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A Temperature-Sensitive Mutation of the Temperature-Regulated Serh3 I-Antigen Gene of Tetrahymena Thermophila: Implications for Regulation of Mutual Exclusion

机译:嗜热四膜膜虫的温度调节Serh3 I-抗原基因的温度敏感突变:互斥调控的含义。

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摘要

The Ser genes of Tetrahymena thermophila specify alternative forms of a major cell surface glycoprotein, the immobilization or i-antigen (i-ag). Regulation of i-ag expression assures that at least one i-ag gene is expressed at all times. To learn more about the regulatory system and the possible role of i-ag itself, we studied SerH3-ts1, a temperature-sensitive allele of the temperature-regulated SerH3 gene normally expressed from 20-36°. In homozygotes grown at the nonpermissive temperature (>32°), H3 is not present on the cell surface, but the gene continues to be transcribed until its 36° cutoff. H3 formed at the permissive temperature is stable at nonpermissive temperatures, indicating that SerH3-ts1 is temperature-sensitive for synthesis rather than function. At nonpermissive temperatures, the S i-ag is expressed in place of H3. This result suggests that normal H protein may play a role in regulating S expression. SerH3-ts1 was isolated following mutagenesis with N-methyl-N'-nitro-N-nitrosoguanidine (MNNG). Sequencing of SerH3-ts1 revealed a single A -> G transition at nucleotide 473, resulting in the substitution of glycine for aspartate. The affected residue is conserved in the internal repeats comprising the H protein, and the charge difference correlates with changes in electrophoretic mobility of the H3 protein.
机译:嗜热四膜菌的Ser基因指定了主要细胞表面糖蛋白的固定形式或i-抗原(i-ag)。 i-ag表达的调节可确保始终表达至少一个i-ag基因。为了了解有关调节系统和i-ag本身可能发挥的作用的更多信息,我们研究了SerH3-ts1,SerH3-ts1是温度调节的SerH3基因的温度敏感等位基因,通常在20-36°之间表达。在非容许温度(> 32°)下生长的纯合子中,H3不存在于细胞表面,但该基因继续转录直到其36°截止。在允许温度下形成的H3在非允许温度下稳定,表明SerH3-ts1对合成敏感,而不是功能敏感。在不允许的温度下,S i-ag代替H3表示。该结果表明正常的H蛋白可能在调节S表达中起作用。用N-甲基-N'-硝基-N-亚硝基胍(MNNG)诱变后分离出SerH3-ts1。 SerH3-ts1的测序显示在核苷酸473处有一个A→G过渡,导致甘氨酸被天冬氨酸取代。受影响的残基在包含H蛋白的内部重复序列中保守,电荷差异与H3蛋白的电泳迁移率变化相关。

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