Structures of Polyhydroxyalkanoate Synthase PhaC from <i>Aeromonas caviae</i> , Producing Biodegradable Plastics
Abstract
Abstract Polyhydroxyalkanoate (PHA) is a biodegradable polyester that can serve as a promising alternative to petrochemical plastics, which present a serious source of pollution. PHA synthase (PhaC) is a key enzyme responsible for producing a wide variety of PHAs in microorganisms. Here, we present crystal structures of full‐length PhaC from Aeromonas caviae , a high‐performance PhaC employed for industrial use. The structure reveals an N‐terminal helical domain that mediates head‐to‐head dimerization and stabilizes the C‐terminal α/β catalytic domain to form a tunnel that connects the catalytic center embedded inside the protein to the protein surface. We showed that this tunnel is a putative egress tunnel for the product PHA chain. Our results establish a fundamental understanding of the PhaC machinery that should lead to improvement of this enzyme in industrial applications.
Article Details
Authors (6)
Min Fey Chek
Structural Biology and Protein Engineering Laboratory Institute for Research Initiatives Nara Institute of Science and Technology 8916‐5 Takayama Ikoma Nara 630‐0192 Japan
Sun‐Yong Kim
Structural Biology and Protein Engineering Laboratory Institute for Research Initiatives Nara Institute of Science and Technology 8916‐5 Takayama Ikoma Nara 630‐0192 Japan
Tomoyuki Mori
Structural Biology and Protein Engineering Laboratory Institute for Research Initiatives Nara Institute of Science and Technology 8916‐5 Takayama Ikoma Nara 630‐0192 Japan
Keiji Matsumoto
Shunsuke Sato
Toshio Hakoshima
Structural Biology and Protein Engineering Laboratory Institute for Research Initiatives Nara Institute of Science and Technology 8916‐5 Takayama Ikoma Nara 630‐0192 Japan