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揭示红螺菌中聚羟基丁酸酯(PHB)降解激活剂的功能:该激活剂是一种与PHB颗粒结合的蛋白质(phasins)。

Unraveling the function of the Rhodospirillum rubrum activator of polyhydroxybutyrate (PHB) degradation: the activator is a PHB-granule-bound protein (phasin).

作者信息

Handrick Rene, Reinhardt Simone, Schultheiss Daniel, Reichart Thomas, Schüler Dirk, Jendrossek Verena, Jendrossek Dieter

机构信息

Institut für Mikrobiologie, Universität Stuttgart, Stuttgart, Germany.

出版信息

J Bacteriol. 2004 Apr;186(8):2466-75. doi: 10.1128/JB.186.8.2466-2475.2004.

Abstract

Efficient hydrolysis of native poly(3-hydroxybutyrate) (nPHB) granules in vitro by soluble PHB depolymerase of Rhodospirillum rubrum requires pretreatment of nPHB with an activator compound present in R. rubrum cells (J. M. Merrick and M. Doudoroff, J. Bacteriol. 88:60-71, 1964). Edman sequencing of the purified activator (17.4 kDa; matrix-assisted laser desorption ionization-time of flight mass spectrometry) revealed identity to a hypothetical protein deduced from a partially sequenced R. rubrum genome. The complete activator gene, apdA (activator of polymer degradation), was cloned from genomic DNA, expressed as a six-His-tagged protein in recombinant Escherichia coli (M(r), 18.3 x 10(3)), and purified. The effect of ApdA on PHB metabolism was studied in vitro and in vivo. In vitro, the activity of the activator could be replaced by trypsin, but recombinant ApdA itself had no protease activity. Comparative sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis of the protein patterns of trypsin- and ApdA-treated nPHB granules isolated from different PHB-accumulating bacteria showed that trypsin activated nPHB by removing proteins of the surface layer of nPHB regardless of the origin of nPHB, but ApdA bound to and interacted with the surface layer of nPHB in a nonproteolytic manner, thereby transforming nPHB into an activated form that was accessible to the depolymerase. In vivo, expression of ApdA in E. coli harboring the PHB biosynthetic genes, phaCBA, resulted in significant increases in the number and surface/volume ratio of accumulated PHB granules, which was comparable to the effect of phasin proteins, such as PhaP in Ralstonia eutropha. The amino acid sequence of ApdA was 55% identical to the amino acid sequence of Mms16, a magnetosome-associated protein in magnetotactic Magnetospirillum species. Mms16 was previously reported to be a GTPase with an essential function in magnetosome formation (Y. Okamura, H. Takeyama, and T. Matsunaga, J. Biol. Chem. 276:48183-48188, 2001). However, no GTPase activity of ApdA could be demonstrated. We obtained evidence that Mms16 of Magnetospirillum gryphiswaldense can functionally replace ApdA in R. rubrum. Fusions of apdA and mms16 to gfp or yfp were functionally expressed, and both fusions colocalized with PHB granules after conjugative transfer to R. rubrum. In conclusion, ApdA in vivo is a PHB-bound, phasin-like protein in R. rubrum. The function of Mms16 in magnetotactic bacteria requires further clarification.

摘要

红螺菌(Rhodospirillum rubrum)的可溶性聚(3-羟基丁酸酯)(PHB)解聚酶在体外对天然聚(3-羟基丁酸酯)(nPHB)颗粒的高效水解需要用红螺菌细胞中存在的一种激活化合物对nPHB进行预处理(J. M. Merrick和M. Doudoroff,《细菌学杂志》88:60 - 71,1964年)。对纯化的激活剂(17.4 kDa;基质辅助激光解吸电离飞行时间质谱)进行的埃德曼测序显示,它与从部分测序的红螺菌基因组推导的一种假定蛋白相同。完整的激活剂基因apdA(聚合物降解激活剂)从基因组DNA中克隆出来,在重组大肠杆菌中表达为带有六个组氨酸标签的蛋白(M(r),18.3×10³)并进行了纯化。在体外和体内研究了ApdA对PHB代谢的影响。在体外,激活剂的活性可以被胰蛋白酶替代,但重组ApdA本身没有蛋白酶活性。对从不同积累PHB的细菌中分离的经胰蛋白酶和ApdA处理的nPHB颗粒的蛋白质模式进行的比较十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳分析表明,胰蛋白酶通过去除nPHB表层蛋白来激活nPHB,而不考虑nPHB的来源,但ApdA以非蛋白水解方式与nPHB表层结合并相互作用,从而将nPHB转化为解聚酶可作用的激活形式。在体内,在携带PHB生物合成基因phaCBA的大肠杆菌中表达ApdA,导致积累的PHB颗粒数量和表面/体积比显著增加,这与诸如嗜麦芽窄食单胞菌(Ralstonia eutropha)中的PhaP等聚体蛋白的作用相当。ApdA的氨基酸序列与趋磁螺菌属(Magnetospirillum)中与磁小体相关的蛋白Mms16的氨基酸序列有55%的同一性。Mms16先前被报道为一种在磁小体形成中具有重要功能的GTP酶(Y. Okamura、H. Takeyama和T. Matsunaga,《生物化学杂志》276:48183 - 48188,2001年)。然而,未检测到ApdA的GTP酶活性。我们获得的证据表明,嗜铁钩端螺旋菌(Magnetospirillum gryphiswaldense)的Mms16在红螺菌中可以在功能上替代ApdA。apdA和mms16与gfp或yfp的融合蛋白在功能上得到表达,并且在接合转移到红螺菌后,这两种融合蛋白都与PHB颗粒共定位。总之,体内的ApdA是红螺菌中一种与PHB结合的、类似聚体的蛋白。趋磁细菌中Mms16的功能需要进一步阐明。

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