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首页> 外文期刊>Applied Microbiology >Cleavage of Rubber by the Latex Clearing Protein (Lcp) of Streptomyces sp. Strain K30: Molecular Insights
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Cleavage of Rubber by the Latex Clearing Protein (Lcp) of Streptomyces sp. Strain K30: Molecular Insights

机译:链霉菌的乳胶清除蛋白(Lcp)对橡胶的切割。菌株K30:分子洞察

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Gram-positive rubber degraders such as Streptomyces sp. strain K30 cleave rubber [poly( cis -1,4-isoprene)] to low-molecular-mass oligoisoprenoid products with terminal keto and aldehyde groups by the secretion of a latex clearing protein (Lcp) designated rubber oxygenase. Lcp_(K30) is a heme b cytochrome and has a domain of unknown function (DUF2236) that is characteristic of orthologous Lcps. Proteins with a DUF2236 domain are characterized by three highly conserved residues (R164, T168, and H198 in Lcp_(K30)). Exchange of R164 or T168 by alanine and characterization of the purified Lcp_(K30) muteins revealed that both were stable and contained a heme group (red color) but were inactive. This finding identifies both residues as key residues for the cleavage reaction. The purified H198A mutein was also inactive and stable but was colorless due to the absence of heme. We constructed and characterized alanine muteins of four additional histidine residues moderately conserved in 495 Lcp_(K30) homologous sequences (H203A, H232A, H259A, H266A). All muteins revealed wild-type properties, excluding any importance for activity and/or heme coordination. Since Lcp_(K30) has only eight histidines and the three remaining residues (H103, H184, and H296) were not conserved (<11%), H198 presumably is the only essential histidine, indicating its putative function as a heme ligand. The second axial position of the heme is likely occupied by a not yet identified molecule. Mutational analysis of three strictly conserved arginine residues (R195, R202, R328) showed that R195A and R202A muteins were colorless and instable, suggesting that these residues are important for the protein stability.IMPORTANCE Large amounts of rubber waste materials have been permanently released into the environment for more than a century, yet accumulation of rubber particles released, e.g., by abrasion of tires along highways has not been observed. This is indicative of the ubiquitous presence and activity of rubber-degrading microorganisms. Despite increasing research activities on rubber biodegradation during the last 2 decades, the knowledge of the enzymatic cleavage mechanism of rubber by latex clearing protein (Lcp) still is limited. In particular, the catalytic cleavage mechanism and the amino acids of Lcp proteins (Lcps) that are involved have not yet been identified for any Lcp. In this study, we investigated the importance of 10 amino acid residues of Lcp from Streptomyces sp. K30 (Lcp_(K30)) by mutagenesis, mutein purification, and biochemical characterization. We identified several essential residues, one of which most likely represents an axial heme ligand in Lcp of Streptomyces sp. K30.
机译:革兰氏阳性橡胶降解物,例如链霉菌。菌株K30通过分泌称为橡胶加氧酶的胶乳清除蛋白(Lcp),将橡胶[聚(顺式-1,4-异戊二烯)]裂解为具有末端酮基和醛基的低分子量低聚异戊二烯酸酯产品。 Lcp_(K30)是血红素b细胞色素,具有功能未知的域(DUF2236),这是直系同源Lcps的特征。具有DUF2236域的蛋白质的特征是三个高度保守的残基(Lcp_(K30)中的R164,T168和H198)。丙氨酸交换R164或T168以及纯化的Lcp_(K30)突变蛋白的特征表明,两者均稳定且含有血红素基团(红色),但没有活性。该发现将两个残基鉴定为裂解反应的关键残基。纯化的H198A突变蛋白也无活性且稳定,但由于缺少血红素而无色。我们构建并表征了在495 Lcp_(K30)同源序列(H203A,H232A,H259A,H266A)中保守的四个其他组氨酸残基的丙氨酸突变蛋白。所有突变蛋白均显示出野生型特性,不包括对活性和/或血红素协调性的任何重要性。由于Lcp_(K30)仅具有八个组氨酸,并且其余三个残基(H103,H184和H296)不保守(<11%),因此H198可能是唯一必需的组氨酸,表明其假定的功能为血红素配体。血红素的第二轴向位置可能被尚未鉴定的分子占据。对三个严格保守的精氨酸残基(R195,R202,R328)进行突变分析表明,R195A和R202A突变蛋白无色且不稳定,这表明这些残基对于蛋白质的稳定性很重要。在超过一个世纪的环境中,尚未观察到例如由于沿公路的轮胎磨损而释放的橡胶颗粒积聚。这表明橡胶降解微生物的普遍存在和活性。尽管在过去的20年中,有关橡胶生物降解的研究活动有所增加,但是关于通过乳胶清除蛋白(Lcp)进行的酶促裂解机理的知识仍然有限。尤其是,尚未针对任何Lcp鉴定出催化裂解机理和所涉及的Lcp蛋白(Lcps)的氨基酸。在这项研究中,我们调查了链霉菌属的Lcp的10个氨基酸残基的重要性。 K30(Lcp_(K30))通过诱变,突变蛋白纯化和生化特性表征。我们鉴定了几个基本残基,其中一个很可能代表链霉菌属Lcp中的轴向血红素配体。 K30。

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