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细菌中链长度聚羟基脂肪酸酯的生物合成、修饰及生物降解

Biosynthesis, modification, and biodegradation of bacterial medium-chain-length polyhydroxyalkanoates.

作者信息

Kim Do Young, Kim Hyung Woo, Chung Moon Gyu, Rhee Young Ha

机构信息

Department of Microbiology, Chungnam National University, Daejeon 305-764, Republic of Korea.

出版信息

J Microbiol. 2007 Apr;45(2):87-97.

PMID:17483792
Abstract

Medium-chain-length polyhydroxyalkanoates (MCL-PHAs), which have constituents with a typical chain length of C6-C14, are polyesters that are synthesized and accumulated in a wide variety of Gram-negative bacteria, mainly pseudomonads. These biopolyesters are promising materials for various applications because they have useful mechanical properties and are biodegradable and biocompatible. The versatile metabolic capacity of some Pseudomonas spp. enables them to synthesize MCL-PHAs that contain various functional substituents; these MCL-PHAs are of great interest because these functional groups can improve the physical properties of the polymers, allowing the creation of tailor-made products. Moreover, some functional substituents can be modified by chemical reactions to obtain more useful groups that can extend the potential applications of MCL-PHAs as environmentally friendly polymers and functional biomaterials for use in biomedical fields. Although MCL-PHAs are water-insoluble, hydrophobic polymers, they can be degraded by microorganisms that produce extracellular MCL-PHA depolymerase. MCL-PHA-degraders are relatively uncommon in natural environments and, to date, only a limited number of MCL-PHA depolymerases have been investigated at the molecular level. All known MCL-PHA depolymerases share a highly significant similarity in amino acid sequences, as well as several enzymatic characteristics. This paper reviews recent advances in our knowledge of MCL-PHAs, with particular emphasis on the findings by our research group.

摘要

中链长度聚羟基脂肪酸酯(MCL-PHAs)的组成成分链长通常为C6-C14,是一类聚酯,可在多种革兰氏阴性菌(主要是假单胞菌)中合成并积累。这些生物聚酯具有有用的机械性能,且可生物降解和生物相容,是用于各种应用的有前景的材料。一些假单胞菌属细菌具有广泛的代谢能力,能够合成含有各种功能取代基的MCL-PHAs;这些MCL-PHAs备受关注,因为这些官能团可以改善聚合物的物理性能,从而能够制造定制产品。此外,一些功能取代基可以通过化学反应进行修饰,以获得更有用的基团,这可以扩展MCL-PHAs作为环境友好型聚合物和用于生物医学领域的功能性生物材料的潜在应用。尽管MCL-PHAs是水不溶性的疏水性聚合物,但它们可被产生细胞外MCL-PHA解聚酶的微生物降解。MCL-PHA降解菌在自然环境中相对少见,迄今为止,仅在分子水平上对有限数量的MCL-PHA解聚酶进行了研究。所有已知的MCL-PHA解聚酶在氨基酸序列以及一些酶学特性方面都具有高度显著的相似性。本文综述了我们对MCL-PHAs认识的最新进展,特别强调了我们研究小组的研究结果。

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