首页> 美国卫生研究院文献>Journal of Bacteriology >Gene Cloning and Molecular Characterization of an Extracellular Poly(l-Lactic Acid) Depolymerase from Amycolatopsis sp. Strain K104-1
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Gene Cloning and Molecular Characterization of an Extracellular Poly(l-Lactic Acid) Depolymerase from Amycolatopsis sp. Strain K104-1

机译:淀粉样芽胞菌胞外聚(1-乳酸)解聚酶的基因克隆和分子表征菌株K104-1

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摘要

We have isolated a polylactide or poly(l-lactic acid) (PLA)-degrading bacterium, Amycolatopsis sp. strain K104-1, and purified PLA depolymerase (PLD) from the culture fluid of the bacterium. Here, we cloned and expressed the pld gene encoding PLD in Streptomyces lividans 1326 and characterized a recombinant PLD (rPLD) preparation. We also describe the processing mechanism from nascent PLD to mature PLD. The pld gene encodes PLD as a 24,225-Da polypeptide consisting of 238 amino acids. Biochemical and Western immunoblot analyses of PLD and its precursors revealed that PLD is synthesized as a precursor (prepro-type), requiring proteolytic cleavage of the N-terminal 35-amino-acid extension including the 26-amino-acid signal sequence and 9-residue prosequence to generate the mature enzyme of 20,904 Da. The cleavage of the prosequence was found to be autocatalytic. PLD showed about 45% similarity to many eukaryotic serine proteases. In addition, three amino acid residues, H57, D102, and S195 (chymotrypsin numbering), which are implicated in forming the catalytic triad necessary for cleavage of amide bond of substrates in eukaryotic serine proteases, were conserved in PLD as residues H74, D111, and S197. The G193 residue (chymotrypsin numbering), which is implicated in forming an oxyanion hole with residue S195 and forms an important hydrogen bond for interaction with the carbonyl group of the scissile peptide bond, was also conserved in PLD. The functional analysis of the PLD mutants H74A, D111A, and S197A revealed that residues H74, D111, and S197 are important for the depolymerase and caseinolytic activities of PLD and for cleavage of the prosequence from pro-type PLD to form the mature one. The PLD preparation had elastase activity which was not inhibited by 1 mM elastatinal, which is 10 times higher than needed for complete inhibition of porcine pancreatic elastase. The rPLD preparation degraded PLA with an average molecular mass of 220 kDa into lactic acid dimers through lactic acid oligomers and finally into lactic acid. The PLD preparation bound to high polymers of 3-hydoxybutyrate, ɛ-caprolacton, and butylene succinate as well as PLA, but it degraded only PLA.
机译:我们已经分离出一种聚乳酸或聚(1-乳酸)(PLA)降解细菌,Amycolatopsis sp。菌株K104-1,以及从细菌培养液中纯化的PLA解聚酶(PLD)。在这里,我们在链霉菌1326中克隆并表达了编码PLD的pld基因,并对重组PLD(rPLD)制剂进行了表征。我们还描述了从新生PLD到成熟PLD的处理机制。 pld基因将PLD编码为24,225-Da的多肽,由238个氨基酸组成。对PLD及其前体的生化和Western免疫印迹分析表明,PLD是作为前体(prepro型)合成的,需要蛋白水解裂解N端35个氨基酸的延伸,包括26个氨基酸的信号序列和9-残基产生20,904 Da的成熟酶。发现该序列的切割是自催化的。 PLD显示与许多真核丝氨酸蛋白酶约有45%的相似性。此外,三个氨基酸残基,H 57 ,D 102 和S 195 (胰凝乳蛋白酶编号),涉及形成催化裂解真核丝氨酸蛋白酶中底物的酰胺键所必需的三联体在PLD中保守为残基H 74 ,D 111 和S 197 。 G 193 残基(胰凝乳蛋白酶编号),与残基S 195 形成一个氧阴离子孔有关,并形成了一个重要的氢键,用于与易裂基的羰基相互作用肽键在PLD中也保守。对PLD突变体H74A,D111A和S197A的功能分析表明,残基H 74 ,D 111 和S 197 对PLD的解聚酶和酪蛋白水解活性,以及​​从亲型PLD裂解序列以形成成熟的PLD。 PLD制剂的弹性蛋白酶活性不受1 mM弹性蛋白酶的抑制,比完全抑制猪胰弹性蛋白酶所需的弹性蛋白酶活性高10倍。 rPLD制剂通过乳酸低聚物将平均分子量为220 kDa的PLA降解为乳酸二聚体,最后降解为乳酸。 PLD制剂与3-羟基丁酸,β-己内酰胺和丁二酸丁二酯的高聚物以及PLA结合,但仅降解PLA。

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