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鞭毛测力计控制副溶血性弧菌游动细胞的分化。

Flagellar dynamometer controls swarmer cell differentiation of V. parahaemolyticus.

作者信息

McCarter L, Hilmen M, Silverman M

机构信息

Agouron Institute, La Jolla, California 92037.

出版信息

Cell. 1988 Jul 29;54(3):345-51. doi: 10.1016/0092-8674(88)90197-3.

Abstract

Swarmer cell genes, laf, are induced when V. parahaemolyticus is grown on the surface of solidified media, embedded in solidified media, suspended in viscous media, or agglutinated with antibody in liquid media. These conditions have in common the constraint of the movement of the polar flagellum. To test the hypothesis that the polar flagellum functions as a sensor necessary for control of swarmer cell formation, we have constructed a variety of mutations in genes encoding components of the polar flagellum, fla. The consequence of such mutations is the constitutive expression of laf genes. So, the performance of the polar flagellum is coupled to the transcription of laf genes such that when function is perturbed, either physically or genetically, swarmer cell genes are induced. Because the polar flagellum appears to be capable of sensing external forces influencing its motion, we suggest it is acting as a dynamometer.

摘要

当副溶血性弧菌在凝固培养基表面生长、嵌入凝固培养基、悬浮于粘性培养基中或在液体培养基中与抗体凝集时,游动细胞基因laf会被诱导表达。这些条件的共同之处在于限制了极鞭毛的运动。为了验证极鞭毛作为控制游动细胞形成所必需的传感器这一假说,我们在编码极鞭毛组分的基因fla中构建了多种突变体。此类突变的结果是laf基因的组成型表达。因此,极鞭毛的性能与laf基因的转录相关联,以至于当极鞭毛的功能受到物理或遗传干扰时,游动细胞基因就会被诱导表达。由于极鞭毛似乎能够感知影响其运动的外力,我们认为它起到了测力计的作用。

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