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细菌对化学刺激的感应中的增强、脱敏及反应反转

Potentiation, desensitization, and inversion of response in bacterial sensing of chemical stimuli.

作者信息

Rubik B A, Koshland D E

出版信息

Proc Natl Acad Sci U S A. 1978 Jun;75(6):2820-4. doi: 10.1073/pnas.75.6.2820.

Abstract

Behavior patterns of chemotactic mutants of Salmonella typhimurium were compared to those of the wild type by using the quantitative tumble frequency assay. Some cheU mutants were completely inverted in their responses--e.g., attractants produce responses expected for repellents and repellents produce responses expected for attractants. Still others swam smoothly and did not respond to any stimuli. Mutants of other complementation groups were found to exhibit exact additivity or potentiation in response to multiple stimuli whereas the wild type showed desensitization. The results suggest that the cheU gene product acts as a switch at the interface between the sensing system and the motor response. The system is finely tuned so that changes in individual proteins can produce potentiation, desensitization, exact additivity, or inversion of responses.

摘要

通过使用定量翻滚频率测定法,将鼠伤寒沙门氏菌趋化突变体的行为模式与野生型进行了比较。一些cheU突变体的反应完全颠倒——例如,吸引剂产生了预期的排斥剂反应,而排斥剂产生了预期的吸引剂反应。还有一些突变体游动顺畅,对任何刺激都无反应。发现其他互补组的突变体在对多种刺激的反应中表现出精确的加和性或增强作用,而野生型则表现出脱敏作用。结果表明,cheU基因产物在传感系统和运动反应之间的界面处起开关作用。该系统经过精细调节,因此单个蛋白质的变化可以产生增强作用、脱敏作用、精确加和性或反应颠倒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34ad/392656/5768b2b26b1c/pnas00018-0288-a.jpg

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