首页> 外文期刊>Journal of bacteriology >Salmonella enterica Serovar Typhimurium Peptidase B Is a Leucyl Aminopeptidase with Specificity for Acidic Amino Acids
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Salmonella enterica Serovar Typhimurium Peptidase B Is a Leucyl Aminopeptidase with Specificity for Acidic Amino Acids

机译:沙门氏菌血清型鼠伤寒肽酶B是一种亮氨酸氨基酸肽酶,对酸性氨基酸具有特异性

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Peptidase B (PepB) of Salmonella enterica serovar Typhimurium is one of three broad-specificity aminopeptidases found in this organism. We have sequenced the pepB gene and found that it encodes a 427-amino-acid (46.36-kDa) protein, which can be unambiguously assigned to the leucyl aminopeptidase (LAP) structural family. PepB has been overexpressed and purified. The active enzyme shows many similarities to other members of the LAP family: it is a heat-stable (70°C; 20 min) hexameric (~270-kDa) metallopeptidase with a pH optimum of 8.5 to 9.5. A detailed study of the substrate specificity of the purified protein shows that it differs from other members of the family in its ability to hydrolyze peptides with N-terminal acidic residues. The preferred substrates for PepB are peptides with N-terminal Asp or Glu residues. Comparison of the amino acid sequence of PepB with those of other LAPs leads to the conclusion that PepB is the prototype of a new LAP subfamily with representatives in several other eubacterial species and to the prediction that the members of this family share the ability to hydrolyze peptides with N-terminal acidic residues. Site-directed mutagenesis has been used to show that this specificity appears to be determined by a single Lys residue present in a sequence motif conserved in all members of the subfamily.
机译:鼠伤寒沙门氏菌鼠伤寒沙门氏菌的肽酶B(PepB)是在该生物体中发现的三种广泛特异性氨基肽酶之一。我们对 pepB 基因进行了测序,发现它编码一个427个氨基酸(46.36 kk)的蛋白质,该蛋白质可以明确分配给亮氨酰氨肽酶(LAP)结构家族。 PepB已过表达和纯化。该活性酶与LAP家族的其他成员显示出许多相似之处:它是一种热稳定(70°C; 20分钟)的六聚体(〜270kDa)金属肽酶,最适pH为8.5至9.5。对纯化蛋白底物特异性的详细研究表明,它与该家族其他成员的不同之处在于其水解带有N端酸性残基的肽的能力。 PepB的优选底物是具有N末端Asp或Glu残基的肽。 PepB氨基酸序列与其他LAP氨基酸序列的比较得出以下结论:PepB是一个新的LAP亚家族的原型,该亚家族具有其他几种真细菌物种的代表,并预测该家族成员具有水解肽的能力。具有N端酸性残基。定点诱变已被用于显示该特异性似乎由存在于亚家族所有成员保守的序列基序中的单个Lys残基决定。

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