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首页> 外文期刊>The biochemical journal >Primary and predicted secondary structures of the Actinomadura R39 extracellular dd-peptidase, a penicillin-binding protein (PBP) related to the Escherichia coli PBP4
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Primary and predicted secondary structures of the Actinomadura R39 extracellular dd-peptidase, a penicillin-binding protein (PBP) related to the Escherichia coli PBP4

机译:猕猴桃R39细胞外dd肽酶的初级和预测二级结构,这是一种与大肠杆菌PBP4相关的青霉素结合蛋白(PBP)

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pAs derived from gene cloning and sequencing, the 489-amino-acid DD-peptidase/penicillin-binding protein (PBP) produced by Actinomadura R39 has a primary structure very similar to that of the Escherichia coli PBP4 [Mottl, Terpstra & Keck (1991) FEMS Microbiol. Lett. 78, 213-220]. Hydrophobic-cluster analysis of the two proteins shows that, providing that a large 174-amino-acid stretch is excluded from the analysis, the bulk of the two polypeptide chains possesses homologues of the active-site motifs and secondary structures found in the class A beta-lactamase of Streptomyces albus G of known three-dimensional structure. The 174-amino-acid insert occurs at equivalent places in the two PBPs, between helices alpha 2 and alpha 3, away from the active site. Such an insert is unique among the penicilloyl serine transferases. It is proposed that the Actinomadura R39 PBP and E. coli PBP4 form a special class, class C, of low-Mr PBPs/DD-peptidases. A vector has been constructed and introduced by electrotransformation in the original Actinomadura R39 strain, allowing high-level expression and secretion of the DD-peptidase/PBP (250 mg.l-1). The gene encoding the desired protein is processed differently in Actinomadura R39 and Streptomyces lividans. Incorrect processing in Streptomyces lividans leads to a secreted protein which is inert in terms of DD-peptidase activity and penicillin-binding capacity./p
机译:> Actinomadura R39产生的489个氨基酸的DD-肽酶/青霉素结合蛋白(PBP)来源于基因克隆和测序,其一级结构与大肠杆菌PBP4非常相似[Mottl,Terpstra& ; Keck(1991)FEMS Microbiol。来吧78,213-220]。对这两种蛋白质的疏水簇分析表明,假设不进行大的174个氨基酸延伸,则两条多肽链的大部分具有A类活性位点基序和二级结构的同源物已知三维结构的链霉菌G的β-内酰胺酶。 174个氨基酸的插入片段位于两个PBP的两个等距位置,分别位于螺旋α2和α3之间,远离活性位点。这样的插入物在青霉素丝氨酸转移酶中是独特的。提出放线猕猴桃R39 PBP和大肠杆菌PBP4形成低Mr PBPs / DD-肽酶的特殊类别,C类。已经通过电转化构建了载体并将其引入原始的Actinomadura R39菌株中,从而允许DD-肽酶/PBP(250mg.1-1)的高水平表达和分泌。编码所需蛋白质的基因在放线放线杆菌R39和淡紫色链霉菌中的加工不同。在青霉链霉菌中处理不当会导致分泌的蛋白质,其DD-肽酶活性和青霉素结合能力呈惰性。

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