MADD regulates natural killer cell degranulation through Rab27a activation

Author:

Medlyn Michael J.1,Maeder Easton2ORCID,Bradley Claire1,Phatarpekar Prasad2,Ham Hyoungjun2ORCID,Billadeau Daniel D.12ORCID

Affiliation:

1. Mayo Clinic 1 Department of Immunology College of Medicine , , Rochester, MN 55905 , USA

2. Division of Oncology Research, Mayo Clinic 2 , Rochester, MN 55905 , USA

Abstract

ABSTRACT Natural killer (NK) cells have the ability to lyse other cells through the release of lytic granules (LGs). This is in part mediated by the small GTPase Rab27a, which was first identified to play a crucial role in degranulation through the study of individuals harboring mutations in the gene encoding Rab27a. However, the guanine nucleotide exchange factor (GEF) regulating the activation of Rab27a in cytotoxic lymphocytes was unknown. Here, we show that knockout of MADD significantly decreased the levels of GTP-bound Rab27a in both resting and stimulated NK cells, and MADD-deficient NK cells and CD8+ T cells displayed severely reduced degranulation and cytolytic ability, similar to that seen with Rab27a deficiency. Although MADD colocalized with Rab27a on LGs and was enriched at the cytolytic synapse, the loss of MADD did not impact Rab27a association with LGs nor their recruitment to the cytolytic synapse. Together, our results demonstrate an important role for MADD in cytotoxic lymphocyte killing.

Funder

Mayo Foundation

National Institute of Allergy and Infectious Diseases

National Institutes of Health

Publisher

The Company of Biologists

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