4.1 Article

High-resolution crystal structure of the Borreliella burgdorferi PlzA protein in complex with c-di-GMP: new insights into the interaction of c-di-GMP with the novel xPilZ domain

期刊

PATHOGENS AND DISEASE
卷 79, 期 5, 页码 -

出版社

OXFORD UNIV PRESS
DOI: 10.1093/femspd/ftab030

关键词

borrelia; borreliella; c-di-GMP; PilZ; xPilZ; PlzA

资金

  1. U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences [W-31-109-ENG-38]
  2. Medical University of South Carolina's Research Resource Facilities program
  3. NIH Shared Instrumentation Award [S10 RR027139]

向作者/读者索取更多资源

This study presents the crystal structure of the Borreliella burgdorferi PlzA protein complexed with c-di-GMP for the first time, revealing the c-di-GMP binding site formed by two structurally similar domains. Additionally, the research findings indicate that the apo and holo forms of PlzA exhibit distinct structural differences.
In the tick-borne pathogens, Borreliella burgdorferi and Borrelia hermsii, c-di-GMP is produced by a single diguanylate cyclase (Rrp1). In these pathogens, the Plz proteins (PlzA, B and C) are the only c-di-GMP receptors identified to date and PlzA is the sole c-di-GMP receptor found in all Borreliella isolates. Bioinformatic analyses suggest that PlzA has a unique PilZN3-PilZ architecture with the relatively uncommon xPilZ domain. Here, we present the crystal structure of PlzA in complex with c-di-GMP (1.6 angstrom resolution). This is the first structure of a xPilz domain in complex with c-di-GMP to be determined. PlzA has a two-domain structure, where each domain comprises topologically equivalent PilZ domains with minimal sequence identity but remarkable structural similarity. The c-di-GMP binding site is formed by the linker connecting the two domains. While the structure of apo PlzA could not be determined, previous fluorescence resonance energy transfer data suggest that apo and holo forms of the protein are structurally distinct. The information obtained from this study will facilitate ongoing efforts to identify the molecular mechanisms of PlzA-mediated regulation in ticks and mammals. Here, the authors present a high-resolution structure of the Borreliella burgdorferi PlzA protein complexed with c-di-GMP.

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