Distinct and shared transcriptomes are regulated by microphthalmia-associated transcription factor isoforms in mast cells

被引:38
作者
Shahlaee, Amir H.
Brandal, Stephanie
Lee, Youl-Nam
Jie, Chunfa
Takemoto, Clifford M. [1 ]
机构
[1] Johns Hopkins Univ, Div Pediat Hematol, Baltimore, MD 21205 USA
[2] Johns Hopkins Univ, Johns Hopkins Med Inst Microarray Core Facil, Baltimore, MD 21205 USA
关键词
D O I
10.4049/jimmunol.178.1.378
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
The Microphthalmia-associated transcription factor (Mitf) is an essential basic helix-loop-helix leucine zipper transcription factor for mast cell development. Mice deficient in Mitf harbor a severe mast cell deficiency, and Mitf-mutant mast cells cultured ex vivo display a, number of functional defects. Therefore, an understanding of the genetic program regulated by Mitf may provide important insights into mast cell differentiation. Multiple, distinct isoforms of Mitf have been identified in a variety of cell types; we found that Mitf-a, Mitf-e, and Mitf-mc were the major isoforms expressed in mast cells. To determine the physiologic function of Mitf in mast cells, we restored expression of these isoforms in primary mast cells from Mitf(-/-) mice. We found that these isoforms restored granular morphology and integrin-mediated migration. By microarray analysis, proteases, signaling molecules, cell surface receptor, and transporters comprised the largest groups of genes up-regulated by all isoforms. Furthermore, we found that isoforms also regulated distinct genes sets, suggesting separable biological activities. This work defines the transcriptome regulated by Mitf in mast cells and supports its role as master regulator of mast cell differentiation. Expression of multiple isoforms of this transcription factor may provide for redundancy of biological activities while also allowing diversity of function.
引用
收藏
页码:378 / 388
页数:11
相关论文
共 48 条
[1]   Alpha-4 integrins and VCAM-1, but not MAdCAM-1, are essential for recruitment of mast cell progenitors to the inflamed lung [J].
Abonia, J. Pablo ;
Hallgren, Jenny ;
Jones, Tatiana ;
Shi, Tong ;
Xu, Yuhui ;
Koni, Pandelakis ;
Flavell, Richard A. ;
Boyce, Joshua A. ;
Austen, K. Frank ;
Gurish, Michael F. .
BLOOD, 2006, 108 (05) :1588-1594
[2]   A comparison of normalization methods for high density oligonucleotide array data based on variance and bias [J].
Bolstad, BM ;
Irizarry, RA ;
Åstrand, M ;
Speed, TP .
BIOINFORMATICS, 2003, 19 (02) :185-193
[3]   New developments in the genetics and activation of mast cell proteases [J].
Caughey, GH .
MOLECULAR IMMUNOLOGY, 2002, 38 (16-18) :1353-1357
[4]   A novel role for proliferin-2 in the ex vivo expansion of hematopoietic stem cells [J].
Choong, ML ;
Tan, MCL ;
Luo, B ;
Lodish, HF .
FEBS LETTERS, 2003, 550 (1-3) :155-162
[5]  
EBI Y, 1992, BLOOD, V80, P1454
[6]   Mast cells as sentinels of innate immunity [J].
Galli, SJ ;
Maurer, M ;
Lantz, CS .
CURRENT OPINION IN IMMUNOLOGY, 1999, 11 (01) :53-59
[7]   Evidence for a role of mast cells in the evolution to congestive heart failure [J].
Hara, M ;
Ono, K ;
Hwang, MW ;
Iwasaki, A ;
Okada, M ;
Nakatani, K ;
Sasayama, S ;
Matsumori, A .
JOURNAL OF EXPERIMENTAL MEDICINE, 2002, 195 (03) :375-381
[8]   MAP kinase links the transcription factor Microphthalmia to c-Kit signalling in melanocytes [J].
Hemesath, TJ ;
Price, ER ;
Takemoto, C ;
Badalian, T ;
Fisher, DE .
NATURE, 1998, 391 (6664) :298-301
[9]   Genomic analysis of the Microphthalmia locus and identification of the MITF-J/Mitf-J isoform [J].
Hershey, CL ;
Fisher, DE .
GENE, 2005, 347 (01) :73-82
[10]   MUTATIONS AT THE MOUSE MICROPHTHALMIA LOCUS ARE ASSOCIATED WITH DEFECTS IN A GENE ENCODING A NOVEL BASIC-HELIX-LOOP-HELIX-ZIPPER PROTEIN [J].
HODGKINSON, CA ;
MOORE, KJ ;
NAKAYAMA, A ;
STEINGRIMSSON, E ;
COPELAND, NG ;
JENKINS, NA ;
ARNHEITER, H .
CELL, 1993, 74 (02) :395-404