The intracellular bacterium Orientia tsutsugamushi uses the autotransporter ScaC to activate BICD adaptors for dynein-based motility

G Giulia Manigrasso K Kittirat Saharat P Panjaporn Chaichana C Chitrasak Kullapanich S Sharanjeet Atwal J Jerome Boulanger (Division of Cell Biology, Medical Research Council Laboratory of Molecular Biology) T Tomos E. Morgan (Medical Research Council Laboratory of Molecular Biology) H Holger Kramer J Jeanne Salje A Andrew P. Carter

Abstract

Abstract The intracellular bacterium Orientia tsutsugamushi relies on the microtubule cytoskeleton and the motor protein dynein to traffic to the perinuclear region within infected cells. However, it remains unclear how the bacterium is coupled to the dynein machinery and how transport is regulated. Here, we discover that O. tsutsugamushi uses its autotransporter protein ScaC to recruit the dynein adaptors BICD1 and BICD2 for movement to the perinucleus. We show that ScaC is sufficient to engage dynein-based motility in the absence of other bacterial proteins and that BICD1 and BICD2 are required for efficient movement of O. tsutsugamushi during infection. Using TIRF single-molecule assays, we demonstrate that ScaC induces BICD2 to adopt an open conformation which activates the assembly of dynein-dynactin complexes. Our results reveal a role for BICD adaptors during bacterial infection and provide mechanistic insights into the life cycle of an important human pathogen.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 03, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

G

Giulia Manigrasso

K

Kittirat Saharat

P

Panjaporn Chaichana

C

Chitrasak Kullapanich

S

Sharanjeet Atwal

J

Jerome Boulanger

Division of Cell Biology, Medical Research Council Laboratory of Molecular Biology

T

Tomos E. Morgan

Medical Research Council Laboratory of Molecular Biology

H

Holger Kramer

J

Jeanne Salje

A

Andrew P. Carter