Identification and characterization of a ubiquitin E3 RING ligase of the Chlamydia-like bacterium Simkania negevensis
Hörner, E.-M.; Boll, V.; Hermanns, T.; Moldovan, A.; Hofmann, K.; Kozjak-Pavlovic, V.
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In the arms race between a pathogen and the host, many bacteria have acquired a sizable armory to counteract or change the defense mechanisms of the host cell, including the eukaryotic ubiquitin system. Simkania negevensis, an obligate intracellular Chlamydia-like bacterium, is one such example. S. negevensis has a biphasic developmental cycle, similar to other members of the Chlamydiales order. The bacterium develops inside a tubular membranous compartment called Simkania-containing vacuole, which is in close contact with the host endoplasmic reticulum (ER) and mitochondria. It can infect a wide range of hosts, with a long infection cycle lasting up to 15 days, and is associated with respiratory tract diseases. Recently, S. negevensis has been discovered to possess an unusually large number of deubiquitinating enzymes, but not much is known about the variety of other ubiquitin-modifying enzymes in this bacterium. Our study provides an initial description of the activity of a so far uncharacterized S. negevensis ubiquitin E3 RING-ligase (SNE_A12920 or SneRING). We report that SneRING primarily generates K63- and K-11 linked ubiquitin chains and preferentially interacts with UbcH5b and UBE2T E2 ubiquitin ligases among the ones we tested. Bacteria express SneRING upon infection of various human cell lines, as well as amoeba. In addition, we demonstrate that a portion of the expressed SneRING co-localizes with mitochondria and ER. Mass spectrometry studies of the SneRING interactome show enrichment in mitochondrial and ER proteins containing a prohibitin domain and involved in organelle morphology, respiration, and stress response. Our work offers the first insights into the function of an S. negevensis RING ligase, an enzyme potentially involved in organelle remodeling to accommodate the unique lifestyle of this intracellular bacterium.
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