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The crystal structure of the cell division amidase amic reveals the fold of the AMIN domain, a new peptidoglycan binding domain

机译:细胞分裂酰胺酶Amic的晶体结构揭示了AMIN结构域的折叠,AMIN结构域是新的肽聚糖结合结构域

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摘要

Summary: Binary fission is the ultimate step of the prokaryotic cell cycle. In Gram-negative bacteria like Escherichia coli, this step implies the invagination of three biological layers (cytoplasmic membrane, peptidoglycan and outer membrane), biosynthesis of the new poles and eventually, daughter cells separation. The latter requires the coordinated action of the N-acetylmuramyl-L-alanine amidases AmiA/B/C and their LytM activators EnvC and NlpD to cleave the septal peptidoglycan. We present here the 2.5? crystal structure of AmiC which includes the first report of an AMIN domain structure, a β-sandwich of two symmetrical four-stranded β-sheets exposing highly conserved motifs on the two outer faces. We show that this N-terminal domain, involved in the localization of AmiC at the division site, is a new peptidoglycan-binding domain. The C-terminal catalytic domain shows an auto-inhibitory alpha helix obstructing the active site. AmiC lacking this helix exhibits by itself an activity comparable to that of the wild type AmiC activated by NlpD. We also demonstrate the interaction between AmiC and NlpD by microscale thermophoresis and confirm the importance of the active site blocking alpha helix in the regulation of the amidase activity.
机译:摘要:二元裂变是原核细胞周期的最终步骤。在大肠杆菌等革兰氏阴性细菌中,该步骤暗示了三个生物层(细胞质膜,肽聚糖和外膜)的内陷,新极的生物合成以及最终子细胞分离。后者需要N-乙酰基muramyl-L-丙氨酸酰胺酶AmiA / B / C及其LytM激活剂EnvC和NlpD的协同作用,以裂解间隔肽聚糖。我们在这里呈现2.5吗? AmiC的晶体结构,其中包括有关AMIN域结构的首次报道,这是两个对称的四链β-折叠的β-三明治,在两个外表面上均显示出高度保守的基序。我们显示,该N末端域,参与AmiC在分裂位点的定位,是一个新的肽聚糖结合域。 C末端催化域显示自动抑制α螺旋,阻碍了活性位点。缺少这种螺旋的AmiC本身具有与NlpD激活的野生型AmiC相当的活性。我们还通过微尺度热泳证明了AmiC和NlpD之间的相互作用,并证实了抑制酰胺酶活性的活性位点阻断α螺旋的重要性。

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