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集胞藻PCC6803中IV型菌毛的生物合成与运动性

Type IV pilus biogenesis and motility in the cyanobacterium Synechocystis sp. PCC6803.

作者信息

Bhaya D, Bianco N R, Bryant D, Grossman A

机构信息

The Carnegie Institution of Washington, Department of Plant Biology, Stanford, CA 94305, USA.

出版信息

Mol Microbiol. 2000 Aug;37(4):941-51. doi: 10.1046/j.1365-2958.2000.02068.x.

Abstract

We have recently shown that phototactic movement in the unicellular cyanobacterium Synechocystis sp. PCC6803 requires type IV pilins. To elucidate further type IV pilus-dependent motility, we inactivated key genes implicated in pilus biogenesis and function. Wild-type Synechocystis sp. PCC6803 cells have two morphologically distinct pilus types (thick and thin pili). Of these, the thick pilus morphotype, absent in a mutant disrupted for the pilin-encoding pilA1 gene, appears to be required for motility. The thin pilus morphotype does not appear to be altered in the pilA1 mutant, raising the possibility that thin pili have a function distinct from that of motility. Mutants disrupted for pilA2, which encodes a second pilin-like protein, are still motile and exhibit no difference in morphology or density of cell-surface pili. In contrast, inactivation of pilD (encoding the leader peptidase) or pilC (encoding a protein required for pilus assembly) abolishes cell motility, and both pilus morphotypes are absent. Thus, the PilA1 polypeptide is required for the biogenesis of the thick pilus morphotype which, in turn, is necessary for motility (hence we refer to them as type IV pili). Furthermore, PilA2 is critical neither for motility nor for pilus biogenesis. Two genes encoding proteins with similarity to PilT, which is considered to be a component of the motor essential for type IV pilus-dependent movement, were also inactivated. A pilT1 mutant is (i) non-motile, (ii) hyperpiliated and (iii) accumulates higher than normal levels of the pilA1 transcript. In contrast, pilT2 mutants are motile, but are negatively phototactic under conditions in which wild-type cells are positively phototactic.

摘要

我们最近发现,单细胞蓝藻集胞藻6803(Synechocystis sp. PCC6803)中的趋光运动需要IV型菌毛蛋白。为了进一步阐明IV型菌毛依赖性运动,我们使参与菌毛生物合成和功能的关键基因失活。野生型集胞藻6803细胞有两种形态不同的菌毛类型(粗菌毛和细菌毛)。其中,编码菌毛蛋白的pilA1基因被破坏而缺失的粗菌毛形态型似乎是运动所必需的。细菌毛形态型在pilA1突变体中似乎没有改变,这增加了细菌毛具有与运动不同功能的可能性。编码第二种菌毛样蛋白的pilA2基因被破坏的突变体仍然具有运动能力,并且在细胞表面菌毛的形态或密度上没有差异。相比之下,pilD(编码前导肽酶)或pilC(编码菌毛组装所需的一种蛋白质)的失活会消除细胞运动能力,并且两种菌毛形态型均不存在。因此,PilA1多肽是粗菌毛形态型生物合成所必需的,而粗菌毛形态型又是运动所必需的(因此我们将它们称为IV型菌毛)。此外,PilA2对于运动和菌毛生物合成均不关键。还使两个与PilT相似的蛋白质编码基因失活,PilT被认为是IV型菌毛依赖性运动所必需的运动器的一个组成部分。pilT1突变体(i)不运动,(ii)菌毛过多,(iii)pilA1转录本水平高于正常水平。相比之下,pilT2突变体具有运动能力,但在野生型细胞为正趋光性的条件下呈负趋光性。

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