Journal article

Differential requirement for the CD45 splicing regulator hnRNPLL for accumulation of NKT and conventional T cells

M Yabas, DI Godfrey, CC Goodnow, GF Hoyne

Plos One | PUBLIC LIBRARY SCIENCE | Published : 2011

Open access

Abstract

Natural killer T (NKT) cells represent an important regulatory T cell subset that develops in the thymus and contains immature (NK1.1 lo) and mature (NK1.1 hi) cell subsets. Here we show in mice that an inherited mutation in heterogeneous ribonucleoprotein L-like protein (hnRNPLL thunder), that shortens the survival of conventional T cells, has no discernible effect on NKT cell development, homeostasis or effector function. Thus, Hnrpll deficiency effectively increases the NKT:T cell ratio in the periphery. However, Hnrpll mutation disrupts CD45RA, RB and RC exon silencing of the Ptprc mRNA in both NKT and conventional T cells, and leads to a comparably dramatic shift to high molecular weigh..

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University of Melbourne Researchers

Grants

Awarded by National Health and Medical Research Council


Funding Acknowledgements

This work was supported by the National Institutes of Health (NIH) contract BAA NIAID-DAIT-07-35; Juvenile Diabetes Research Foundation/National Health and Medical Research Council (JDRF/NHMRC) Special Program Grant 219167 and JDRF Program Grant 7-2006-327. Dr. Yabas was supported by a postgraduate award from the Ministry of National Education, Republic of Turkey, Dr. Godfrey by an NHMRC Principal Research Fellowship and Dr. Goodnow by an Australian Research Council (ARC) Federation Fellowship. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.