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一种蓝藻集胞藻中微菌素加工肽酶样蛋白对生物膜促进蛋白的分泌是必需的。

A microcin processing peptidase-like protein of the cyanobacterium Synechococcus elongatus is essential for secretion of biofilm-promoting proteins.

机构信息

The Mina and Everard Goodman Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan, Israel.

Division of Biological Sciences, University of California, San Diego, La Jolla, CA, 92093, USA.

出版信息

Environ Microbiol Rep. 2019 Jun;11(3):456-463. doi: 10.1111/1758-2229.12751. Epub 2019 Mar 29.

Abstract

Small secreted compounds, e.g. microcins, are characterized by a double-glycine (GG) secretion motif that is cleaved off upon maturation. Genomic analysis suggests that small proteins that possess a GG motif are widespread in cyanobacteria; however, the roles of these proteins are largely unknown. Using a biofilm-proficient mutant of the cyanobacterium Synechococcus elongatus PCC 7942 in which the constitutive biofilm self-suppression mechanism is inactivated, we previously demonstrated that four small proteins, Enable biofilm formation with a GG motif (EbfG1-4), each with a GG motif, enable biofilm formation. Furthermore, a peptidase belonging to the C39 family, Peptidase transporter enabling Biofilm (PteB), is required for secretion of these proteins. Here, we show that the microcin processing peptidase-like protein encoded by gene Synpcc7942_1127 is also required for biofilm development - inactivation of this gene in the biofilm-proficient mutant abrogates biofilm development. Additionally, this peptidase-like protein (denoted EbfE - enables biofilm formation peptidase) is required for secretion of the EbfG biofilm-promoting small proteins. Given their protein-domain characteristics, we suggest that PteB and EbfE take part in a maturation-secretion system, with PteB being located to the cell membrane while EbfE is directed to the periplasmic space via its secretion signal.

摘要

小分泌化合物,例如微菌素,其特征在于双甘氨酸 (GG) 分泌基序,该基序在成熟时被切割。基因组分析表明,具有 GG 基序的小蛋白在蓝藻中广泛存在;然而,这些蛋白质的作用在很大程度上是未知的。使用具有失活组成型生物膜自我抑制机制的蓝藻 Synechococcus elongatus PCC 7942 的生物膜高效突变体,我们之前证明了四个具有 GG 基序的小蛋白(Enable biofilm formation with a GG motif (EbfG1-4))能够促进生物膜形成。此外,属于 C39 家族的肽酶,Peptidase transporter enabling Biofilm (PteB),对于这些蛋白质的分泌是必需的。在这里,我们表明基因 Synpcc7942_1127 编码的微菌素加工肽酶样蛋白也需要生物膜发育 - 在生物膜高效突变体中失活该基因会阻止生物膜发育。此外,这种肽酶样蛋白(表示为 EbfE - enables biofilm formation peptidase)对于 EbfG 促进生物膜形成的小蛋白的分泌是必需的。鉴于它们的蛋白结构域特征,我们建议 PteB 和 EbfE 参与成熟-分泌系统,其中 PteB 位于细胞膜上,而 EbfE 通过其分泌信号被定向到周质空间。

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