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在一株大肠杆菌中,yghB和yqjA发生突变,这两个基因编码相关且保守的内膜蛋白,该菌株表现出温度敏感性和细胞分裂缺陷。

Temperature sensitivity and cell division defects in an Escherichia coli strain with mutations in yghB and yqjA, encoding related and conserved inner membrane proteins.

作者信息

Thompkins Kandi, Chattopadhyay Ballari, Xiao Ying, Henk Margaret C, Doerrler William T

机构信息

Department of Biological Sciences, Louisiana State University, Baton Rouge, LA 70803, USA.

出版信息

J Bacteriol. 2008 Jul;190(13):4489-500. doi: 10.1128/JB.00414-08. Epub 2008 May 2.

Abstract

Ludox density gradients were used to enrich for Escherichia coli mutants with conditional growth defects and alterations in membrane composition. A temperature-sensitive mutant named Lud135 was isolated with mutations in two related, nonessential genes: yghB and yqjA. yghB harbors a single missense mutation (G203D) and yqjA contains a nonsense mutation (W92TGA) in Lud135. Both mutations are required for the temperature-sensitive phenotype: targeted deletion of both genes in a wild-type background results in a strain with a similar phenotype and expression of either gene from a plasmid restores growth at elevated temperatures. The mutant has altered membrane phospholipid levels, with elevated levels of acidic phospholipids, when grown under permissive conditions. Growth of Lud135 under nonpermissive conditions is restored by the presence of millimolar concentrations of divalent cations Ca(2+), Ba(2+), Sr(2+), or Mg(2+) or 300 to 500 mM NaCl but not 400 mM sucrose. Microscopic analysis of Lud135 demonstrates a dramatic defect at a late stage of cell division when cells are grown under permissive conditions. yghB and yqjA belong to the conserved and widely distributed dedA gene family, for which no function has been reported. The two open reading frames encode predicted polytopic inner membrane proteins with 61% amino acid identity. It is likely that YghB and YqjA play redundant but critical roles in membrane biology that are essential for completion of cell division in E. coli.

摘要

利用卢多克斯密度梯度来富集具有条件性生长缺陷和膜组成改变的大肠杆菌突变体。分离出了一个名为Lud135的温度敏感突变体,其在两个相关的非必需基因yghB和yqjA中发生了突变。在Lud135中,yghB有一个单错义突变(G203D),yqjA含有一个无义突变(W92TGA)。这两个突变都是温度敏感表型所必需的:在野生型背景下靶向缺失这两个基因会产生一个具有相似表型的菌株,并且从质粒表达任何一个基因都能恢复在高温下的生长。当在允许条件下生长时,该突变体的膜磷脂水平发生了改变,酸性磷脂水平升高。在非允许条件下,Lud135的生长可通过毫摩尔浓度的二价阳离子Ca(2+)、Ba(2+)、Sr(2+)或Mg(2+)或300至500 mM NaCl的存在而恢复,但不能通过400 mM蔗糖恢复。对Lud135的显微镜分析表明当细胞在允许条件下生长时,在细胞分裂后期存在严重缺陷。yghB和yqjA属于保守且广泛分布的dedA基因家族,尚未报道其功能。这两个开放阅读框编码预测的多跨膜内膜蛋白,氨基酸同一性为61%。YghB和YqjA可能在膜生物学中发挥冗余但关键的作用,这对于大肠杆菌细胞分裂的完成至关重要。

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