在耻垢分枝杆菌中,PknL和MSMEG_4242的消除改变了外包膜的特征,并选择了Lsr2的突变

Q1 Immunology and Microbiology
Estalina Báez-Ramírez , Luis Querales , Carlos Andres Aranaga , Gustavo López , Elba Guerrero , Laurent Kremer , Séverine Carrère-Kremer , Albertus Viljoen , Mamadou Daffé , Françoise Laval , Stewart T. Cole , Andrej Benjak , Pedro Alzari , Gwenaëlle André-Leroux , William R. Jacobs Jr. , Catherine Vilcheze , Howard E. Takiff
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引用次数: 2

摘要

四种丝氨酸/苏氨酸激酶存在于所有分枝杆菌中:PknA、PknB、PknG和PknL。PknA和PknB对生长和复制至关重要,PknG调节代谢,但对PknL知之甚少。在粗糙集落M. smegmatis mc2155中,pknL和邻近调节因子MSMEG_4242失活可产生光滑集落和粗糙集落。对粗糙的菌落进行重划后,出现光滑菌落的频率约为1/250。光滑突变体没有形成生物膜,在薄层色谱上显示出滑动运动增加和异常脂质,通过质谱鉴定为低脂糖,也可能是糖肽类脂。RNA-seq和Sanger测序显示,所有光滑突变体由于突变和不同的IS1096插入而使lsr2基因失活。当补充lsr2时,菌落变得粗糙,异常脂质消失,滑动运动性下降。平滑突变体显示IS1096转座酶TnpA和MSMEG_4727的表达增加,MSMEG_4727编码一种类似PKS5的蛋白质。当MSMEG_4727被删除后,光滑的pknL/MSMEG_4242/lsr2突变体恢复为粗糙的,形成了良好的生物膜,其运动性略有下降,异常脂质消失。粗糙的delpknL/del4242突变体形成较差的生物膜,表现出下降的、异常的滑动运动性,两种表型都被两个缺失的基因所补充。lsr2失活使菌落形态由粗糙变为光滑,增加了滑动运动性,增加了MSMEG_4727等合成低脂糖酶的表达,明显阻止了生物膜的形成。类似的形态变化也发生在其他分枝杆菌中,可能反映了环境适应。PknL和MSMEG_4242调节外包膜的脂质成分,它们的缺失选择了lsr2失活。提出了一个调控的磷酸化级联模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Elimination of PknL and MSMEG_4242 in Mycobacterium smegmatis alters the character of the outer cell envelope and selects for mutations in Lsr2

Elimination of PknL and MSMEG_4242 in Mycobacterium smegmatis alters the character of the outer cell envelope and selects for mutations in Lsr2

Elimination of PknL and MSMEG_4242 in Mycobacterium smegmatis alters the character of the outer cell envelope and selects for mutations in Lsr2

Elimination of PknL and MSMEG_4242 in Mycobacterium smegmatis alters the character of the outer cell envelope and selects for mutations in Lsr2

Four serine/threonine kinases are present in all mycobacteria: PknA, PknB, PknG and PknL. PknA and PknB are essential for growth and replication, PknG regulates metabolism, but little is known about PknL. Inactivation of pknL and adjacent regulator MSMEG_4242 in rough colony M. smegmatis mc2155 produced both smooth and rough colonies. Upon restreaking rough colonies, smooth colonies appeared at a frequency of ~ 1/250. Smooth mutants did not form biofilms, showed increased sliding motility and anomalous lipids on thin-layer chromatography, identified by mass spectrometry as lipooligosaccharides and perhaps also glycopeptidolipids. RNA-seq and Sanger sequencing revealed that all smooth mutants had inactivated lsr2 genes due to mutations and different IS1096 insertions. When complemented with lsr2, the colonies became rough, anomalous lipids disappeared and sliding motility decreased. Smooth mutants showed increased expression of IS1096 transposase TnpA and MSMEG_4727, which encodes a protein similar to PKS5. When MSMEG_4727 was deleted, smooth pknL/MSMEG_4242/lsr2 mutants reverted to rough, formed good biofilms, their motility decreased slightly and their anomalous lipids disappeared. Rough delpknL/del4242 mutants formed poor biofilms and showed decreased, aberrant sliding motility and both phenotypes were complemented with the two deleted genes. Inactivation of lsr2 changes colony morphology from rough to smooth, augments sliding motility and increases expression of MSMEG_4727 and other enzymes synthesizing lipooligosaccharides, apparently preventing biofilm formation. Similar morphological phase changes occur in other mycobacteria, likely reflecting environmental adaptations. PknL and MSMEG_4242 regulate lipid components of the outer cell envelope and their absence selects for lsr2 inactivation. A regulatory, phosphorylation cascade model is proposed.

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来源期刊
Cell Surface
Cell Surface Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
6.10
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审稿时长
49 days
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