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Phenotypic Switching in Mycoplasma gallisepticum Hemadsorption Is Governed by a High-Frequency Reversible Point Mutation

机译:鸡毒支原体溶血的表型转换是由高频可逆点突变控制的。

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摘要

Mycoplasma gallisepticum is a flask-shaped organism that commonly induces chronic respiratory disease in chickens and infectious sinusitis in turkeys. Phenotypic switching in M. gallisepticum hemadsorption (HA) was found to correlate with phase variation of the GapA cytadhesin concurrently with that of the CrmA protein, which exhibits cytadhesin-related features and is encoded by a gene located downstream of the gapA gene as part of the same transcription unit. In clones derived from strain Rlow, detailed genetic analyses further revealed that on-off switching in GapA expression is governed by a reversible base substitution occurring at the beginning of the gapA structural gene. In HA variants, this event generates a stop codon that results in the premature termination of GapA translation and consequently affects the expression of CrmA. Sequences flanking the mutation spot do not feature any repeated motifs that could account for error-prone mutation via DNA slippage and the exact mechanism underlying this high-frequency mutational event remains to be elucidated. An HA mutant deficient in producing CrmA, mHAD3, was obtained by disrupting the crmA gene by using transposition mutagenesis. Despite a fully functional gapA gene, the amount of GapA detected in this mutant was considerably lower than in HA+ clonal variants, suggesting that, in absence of CrmA, GapA might be subjected to a higher turnover.
机译:鸡毒支原体是一种烧瓶状生物,通常会诱发鸡的慢性呼吸道疾病和火鸡的传染性鼻窦炎。发现鸡毒支原体血液吸附(HA)的表型转换与GapA胞苷和CrmA蛋白的相变相关,后者具有胞苷相关的功能,并由位于gapA基因下游的基因编码相同的转录单位。在衍生自Rlow菌株的克隆中,详细的遗传分析进一步显示,GapA表达的通断开关受在gapA结构基因开始时发生的可逆碱基取代控制。在HA -变体中,此事件生成终止密码子,导致GapA翻译过早终止,因此影响CrmA的表达。突变点两侧的序列不具有任何重复的基序,这些基元可以通过DNA滑移来解释容易出错的突变,而这种高频突变事件的确切机制尚待阐明。通过使用转座诱变破坏crmA基因,获得了缺乏产生CrmA的HA -突变体mHAD3。尽管gapA基因功能齐全,但该突变体中检测到的GapA量远低于HA + 克隆变异体,这表明在缺少CrmA的情况下,GapA可能需要更高的周转率。

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