Literature DB >> 21225468

ZFAT is a critical molecule for cell survival in mouse embryonic fibroblasts.

Keiko Doi1, Takahiro Fujimoto, Midori Koyanagi, Toshiyuki Tsunoda, Yoko Tanaka, Yasuhiro Yoshida, Yasuo Takashima, Masahide Kuroki, Takehiko Sasazuki, Senji Shirasawa.   

Abstract

ZFAT was originally identified as an immune-related transcriptional regulator containing 18 C2H2-type zinc-finger domains and one AT-hook. ZFAT is highly conserved among species and functions as an anti-apoptotic molecule in the lymphoblastic leukemia cell line, MOLT-4. We recently demonstrated that ZFAT is an essential molecule for hematopoietic differentiation in blood islands through the direct regulation of particular transcriptional factors, including Tal1, for endothelial cell assembly, and for the branch point formation of capillary-like structures. However, the molecular mechanisms underlying the anti-apoptotic function of ZFAT remain unknown. Here, we report that ZFAT knockdown by small interfering RNA induced apoptosis in mouse embryonic fibroblasts (MEFs). This response had been similarly observed for MOLT-4 cells. To explore the molecular mechanisms for ZFAT in anti-apoptotic function in both MEFs and MOLT-4 cells, microarray expression analysis and quantitative RT-PCR were done. Of interest was that Bcl-2 and Il6st were identified as commonly down-regulated genes by the depletion of ZFAT for both MEFs and MOLT-4 cells. These results suggest that ZFAT is a critical molecule for cell survival in MEFs and MOLT-4 cells at least in part through the regulation of the apoptosis involved in the BCL-2- and IL6st-mediated pathways. Further elucidation of the molecular functions for ZFAT might shed light on the cellular programs in the mesoderm-derived cells.

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Year:  2010        PMID: 21225468      PMCID: PMC6275631          DOI: 10.2478/s11658-010-0041-1

Source DB:  PubMed          Journal:  Cell Mol Biol Lett        ISSN: 1425-8153            Impact factor:   5.787


Supplementary material, approximately 340 KB.
  7 in total

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4.  Solution structures of the DNA-binding domains of immune-related zinc-finger protein ZFAT.

Authors:  Naoya Tochio; Takashi Umehara; Kazuhiko Nakabayashi; Misao Yoneyama; Kengo Tsuda; Mikako Shirouzu; Seizo Koshiba; Satoru Watanabe; Takanori Kigawa; Takehiko Sasazuki; Senji Shirasawa; Shigeyuki Yokoyama
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7.  Zfat-deficiency results in a loss of CD3ζ phosphorylation with dysregulation of ERK and Egr activities leading to impaired positive selection.

Authors:  Masahiro Ogawa; Tadashi Okamura; Shuhei Ishikura; Keiko Doi; Hiroshi Matsuzaki; Yoko Tanaka; Takeharu Ota; Kunihiro Hayakawa; Harumi Suzuki; Toshiyuki Tsunoda; Takehiko Sasazuki; Senji Shirasawa
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  7 in total

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