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它通过氨基酸/多胺转运蛋白家族的成员摄取亚精胺,以在阴道 pH 值下耐受柠檬酸应激。

imports spermidine by a member of the amino acid/polyamine antiporter family to endure citric acid stress at the vaginal pH.

机构信息

ISP, Bactéries et Risque Materno-Foetal, Université de Tours, INRAE, 37032 Tours, France.

LBA3B, AZM Center for Research in Biotechnology and its Applications, EDST, Lebanese University, Tripoli 1300, Lebanon.

出版信息

Microbiology (Reading). 2022 Aug;168(8). doi: 10.1099/mic.0.001219.

Abstract

Polyamines bind to various cellular components, such as nucleic acids, phospholipids, proteins and nucleotides. They are involved in the virulence and protection against physiological stresses of several bacterial species. is able to colonize the vaginal tract of asymptomatic pregnant women and to resist, by an as yet poorly characterized mechanism, pH 4.0, the low physiological pH of this environment. We identified a transporter of the amino acid/polyamine antiporter family (SAK_1604 in strain A909) that shares 39.8 % similar amino acids with CadB and 34.7 % with PotE, two transporters implicated in acid resistance in . We found that is overexpressed in the presence of spermidine and during citric acid stress at the vaginal pH, but not during lactic acid or HCl stresses at the same pH or during a sodium citrate stress at pH 7.4. Dihydrogen citrate is the predominant form of citric acid at pH 4.0. Using a deletion mutant, we proved that SAK_1604 is involved in the survival of during citric acid stress at pH 4.0 in the presence of spermidine, and we showed by TLC analysis that it is involved in spermidine transport in these conditions. Our data open new perspectives on the comprehension of the molecular mechanisms allowing to survive at the physiological pH of the vagina and on the unsuspected role of an ionic form of citric acid.

摘要

多胺与各种细胞成分结合,如核酸、磷脂、蛋白质和核苷酸。它们参与几种细菌的毒力和对生理应激的保护。能够定植无症状孕妇的阴道,并通过一种尚未被很好描述的机制抵抗生理 pH 值为 4.0 的低 pH 值环境。我们鉴定了一种氨基酸/多胺反向转运蛋白家族的转运蛋白(A909 株中的 SAK_1604),它与 CadB 有 39.8%的相似氨基酸,与 PotE 有 34.7%的相似氨基酸,CadB 和 PotE 两种转运蛋白都与 中的酸抗性有关。我们发现,在精胺存在下,以及在阴道 pH 值下柠檬酸应激时, 过度表达,但在相同 pH 值下的乳酸或 HCl 应激时或在 pH 值为 7.4 时的柠檬酸钠应激时不表达。在 pH 4.0 时,二氢柠檬酸是柠檬酸的主要形式。使用缺失突变体,我们证明了 SAK_1604 参与了在 pH 值为 4.0 时的柠檬酸应激下,在精胺存在时的 生存,并且我们通过薄层色谱分析表明,它在这些条件下参与了精胺的转运。我们的数据为理解 能够在阴道的生理 pH 值下生存的分子机制以及柠檬酸的一种离子形式的意想不到的作用开辟了新的视角。

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