Structures of Polyhydroxyalkanoate Synthase PhaC from <i>Aeromonas caviae</i> , Producing Biodegradable Plastics

M 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) S 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) T 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) K Keiji Matsumoto S Shunsuke Sato T 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)

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

Volume / Issue Vol. 64, Issue 26
Published June 24, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

M

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

S

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

T

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

K

Keiji Matsumoto

S

Shunsuke Sato

T

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