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Published on: October 15, 2018
THOC5/FMIP, an mRNA export TREX complex protein, is essential for hematopoietic primitive cell survival in vivo
Annalisa Mancini1, Susanne C Niemann-Seyde, Rüdiger Pankow
1Institut fuer Biochemie, OE4310, Medizinische Hochschule Hannover, Carl-Neuberg-Str, 1, D-30623 Hannover, Germany. annalisa_mancini@hotmail.de
Background:
The transcription/export complex is evolutionarily conserved from yeast to man and is required for coupled transcription elongation and nuclear export of mRNAs. FMIP(Fms interacting protein) is a member of the THO (suppressors of the transcriptional defects of hpr1delta by overexpression) complex which is a subcomplex of the transcription/export complex. THO complex (THOC) components are not essential for bulk poly (A)+ RNA export in higher eukaryotes, but for the nuclear export of subset of mRNAs, however, their exact role is still unclear.
Results:
To study the role of THOC5/Fms interacting protein in vivo, we generated THOC5/Fms interacting protein knockout mice. Since these mice are embryonic lethal, we then generated interferon inducible conditional THOC5/Fms interacting protein knockout mice. After three poly injections all of the mice died within 14 days. No pathological alterations, however, were observed in liver, kidney or heart. Thus we considered the hematopoietic system and found that seven days after poly injection, the number of blood cells in peripheral blood decreased drastically. Investigation of bone marrow cells showed that these became apoptotic within seven days after poly injection. Committed myeloid progenitor cells and cells with long term reconstituting potential were lost from bone marrow within four days after poly injection. Furthermore, infusion of normal bone marrow cells rescued mice from death induced by loss of THOC5/Fms interacting protein.
Conclusion:
THOC5/Fms interacting protein is an essential element in the maintenance of hematopoiesis. Furthermore, mechanistically depletion of THOC5/Fms interacting protein causes the down-regulation of its direct interacting partner, THOC1 which may contribute to altered THO complex function and cell death.
Insights
Fms interacting protein (FMIP) is crucial for maintaining hematopoiesis. Its depletion leads to blood cell loss and apoptosis, highlighting its essential role in blood cell development and survival.
Area of Science:
- Molecular Biology
- Hematopoiesis Research
- Gene Regulation
Background:
- The transcription/export complex facilitates mRNA processing and nuclear export.
- Fms interacting protein (FMIP) is part of the THO complex, a subcomplex of the transcription/export machinery.
- The precise role of THO complex components in higher eukaryotes remains incompletely understood.
Purpose of the Study:
- To investigate the in vivo function of THOC5/Fms interacting protein (FMIP).
- To determine the role of FMIP in hematopoiesis and cellular survival.
Main Methods:
- Generation of interferon-inducible conditional THOC5/Fms interacting protein knockout mice.
- Administration of poly(I:C) to induce gene knockout.
- Hematological analysis of peripheral blood and bone marrow.
- Assessment of cell apoptosis and progenitor cell populations.
- Bone marrow transplantation studies.
Main Results:
- Conditional knockout mice exhibited embryonic lethality, necessitating a conditional knockout model.
- Poly(I:C) administration led to rapid mortality within 14 days.
- Significant decrease in peripheral blood cell counts and increased apoptosis in bone marrow cells observed within seven days.
- Loss of committed myeloid progenitor cells and long-term reconstituting cells within four days.
- Normal bone marrow cell infusion rescued mice from mortality.
Conclusions:
- THOC5/Fms interacting protein (FMIP) is essential for maintaining hematopoiesis.
- FMIP depletion results in the downregulation of THOC1, potentially disrupting THO complex function and leading to cell death.
Related Concept Videos
Hematopoiesis
General Transcription Factors
Nuclear Export of mRNA
Nuclear Export of mRNA
Multipotency of Hematopoietic Stem Cells
Regulation of Hematopoietic Stem Cells

