Molecular basis of foreign DNA recognition by BREX anti-phage immunity system

A Alena Drobiazko M Myfanwy C. Adams M Mikhail Skutel K Kristina Potekhina O Oksana Kotovskaya (Skolkovo Institute of Science and Technology) A Anna Trofimova M Mikhail Matlashov D Daria Yatselenko K Karen L. Maxwell T Tim R. Blower K Konstantin Severinov (Institute of Gene Biology) D Dmitry Ghilarov A Artem Isaev (Skolkovo Institute of Science and Technology)

Abstract

Abstract Anti-phage systems of the BREX (BacteRiophage EXclusion) superfamily rely on site-specific epigenetic DNA methylation to discriminate between the host and invading DNA. We demonstrate that in Type I BREX systems, defense and methylation require BREX site DNA binding by the BrxX (PglX) methyltransferase employing S-adenosyl methionine as a cofactor. We determined 2.2-Å cryoEM structure of Escherichia coli BrxX bound to target dsDNA revealing molecular details of BREX DNA recognition. Structure-guided engineering of BrxX expands its DNA specificity and dramatically enhances phage defense. We show that BrxX alone does not methylate DNA, and BREX activity requires an assembly of a supramolecular BrxBCXZ immune complex. Finally, we present a cryoEM structure of BrxX bound to a phage-encoded inhibitor Ocr that sequesters BrxX in an inactive dimeric form. We propose that BrxX-mediated foreign DNA sensing is a necessary first step in activation of BREX defense.

Article Details

Volume / Issue Vol. 16, Issue 1
Published February 20, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (13)

A

Alena Drobiazko

M

Myfanwy C. Adams

M

Mikhail Skutel

K

Kristina Potekhina

O

Oksana Kotovskaya

Skolkovo Institute of Science and Technology

A

Anna Trofimova

M

Mikhail Matlashov

D

Daria Yatselenko

K

Karen L. Maxwell

T

Tim R. Blower

K

Konstantin Severinov

Institute of Gene Biology

D

Dmitry Ghilarov

A

Artem Isaev

Skolkovo Institute of Science and Technology