PML isoforms I and II participate in PML-dependent restriction of HSV-1 replication

Author:

Cuchet Delphine1,Sykes Amanda1,Nicolas Armel1,Orr Anne1,Murray Jill1,Sirma Hüseyin2,Heeren Joerg3,Bartelt Alexander3,Everett Roger D.1

Affiliation:

1. MRC-University of Glasgow Centre for Virus Research, Church Street, Glasgow G11 5JR, Scotland, UK

2. Heinrich-Pette-Institute and and Institute of Pathology University Hospital UKE, Martinistrasse 52, 20251 Hamburg, Germany

3. IBMII: Molecular Cell Biology, Martinistrasse 52, 20246 Hamburg, Germany

Abstract

Intrinsic antiviral resistance mediated by constitutively expressed cellular proteins is one arm of defence against virus infection. Promyelocytic leukaemia nuclear bodies (PML-NBs, also known as ND10) contribute to host restriction of herpes simplex virus type 1 (HSV-1) replication via mechanisms that are counteracted by viral regulatory protein ICP0. ND10 assembly is dependent on PML, which comprises several different isoforms, and depletion of all PML isoforms decreases cellular resistance to ICP0-null mutant HSV-1. We report that individual expression of PML isoforms I and II partially reverses the increase in ICP0-null mutant HSV-1 plaque formation that occurs in PML-depleted cells. This activity of PML isoform I is dependent on SUMO modification, its SUMO interaction motif (SIM), and each element of its TRIM domain. Detailed analysis revealed that the punctate foci formed by individual PML isoforms differ subtly from normal ND10 in terms of composition and/or Sp100 modification. Surprisingly, deletion of the SIM motif from PML isoform I resulted in increased colocalisation with other major ND10 components in cells lacking endogenous PML. Our observations suggest that complete functionality of PML is dependent on isoform-specific C-terminal sequences acting in concert.

Publisher

The Company of Biologists

Subject

Cell Biology

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