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Biology subjects

Tuli, A.

Publications and source records attributed to Tuli, A..

2 recordsLinked to original sources

TECPR2 is a Rab5 effector that regulates endosomal cargo recycling

Small GTP-binding (G) proteins of the Rabs, Arfs, and Arls (Arf-like) family mediate the recruitment of their effectors to subcellular membrane-bound compartments, which in turn mediates vesicle budding, motility, and tethering. Here, we report that Tectonin-{beta}-propeller repeat containing protein 2 (TECPR2), a protein mutated in a form of hereditary sensory and autonomic neuropathy (HSAN), is an effector of early endosomal Rab protein, Rab5, and interacts with Rab5 via its C-terminal TECPR repeats. The HSAN-associated TECPR2 (R1336W) missense variant was deficient in Rab5-binding and, consequently, in membrane recruitment. TECPR2-depletion led to perinuclear collapse of recycling endosomes and increased overlap of sorting and degradative subdomain markers on early endosomes. Consistent with a possible role in endocytic recycling, we observed impaired recycling and increased lysosomal degradation of 5{beta}1 integrin receptors upon TECPR2 knockdown. TECPR2 regulates the early endosomal localization of the cargo adaptor for {beta}1 integrins, SNX17, and its-associated protein complex WASH, which mediates actin polymerization on early endosomes. Finally, TECPR2 depletion in the zebrafish model resulted in delayed motility and changes in the neuromuscular junction. Our study supports an early endosomal role for TECPR2 in cargo recycling and provides insights into how its loss-of- function results in a neurodegenerative genetic disorder.

cell biology↗

SifA SUMOylation governs Salmonella intracellular survival via modulation of lysosomal function

Gastroenteritis causing pathogen Salmonella Typhimurium (S. Tm) during its infection in host cells thrives in a vacuolated compartment, Salmonella Containing Vacuole (SCV), which sequentially acquires host endosomal and lysosomal markers. Long tubular structures, called as Salmonella induced filaments (SIFs), are known to be required for SCVs nutrient acquisition, membrane maintenance and stability. A tightly coordinated interactions involving prominent effector SifA and various host adapters PLEKHM1, PLEKHM2 and Rab GTPases govern SCV integrity and SIF formation. Here, we report for the first time, the functional regulation of SifA is modulated by its SUMOylation at lysine 11. S. Tm expressing lysine 11 mutant SifA (SifAK11R) is defective in intracellular proliferation due to compromised SIF formation and enhanced lysosomal acidification. Furthermore, murine competitive index experiments reveal defective in vivo proliferation and weakened virulence of SifAK11R mutant. Concisely, our results demonstrate that SUMO deficient SifA mutant nearly behaves like a SifA knockout strain which impacts PLEKHM2-M6PR mediated lysosomal acidification pathway. Thus, our results bring forth a novel S. Tm-host crosstalk mechanism involving host mediated effector SUMOylation critical for pathogenicity.

microbiology↗