Publications by authors named "Naoko Takahashi-Makise"

ATP-binding cassette subfamily B member 10 (Abcb10) is a mitochondrial ATP-binding cassette (ABC) transporter that complexes with mitoferrin1 and ferrochelatase to enhance heme biosynthesis in developing red blood cells. Reductions in Abcb10 levels have been shown to reduce mitoferrin1 protein levels and iron import into mitochondria, resulting in reduced heme biosynthesis. As an ABC transporter, Abcb10 binds and hydrolyzes ATP, but its transported substrate is unknown.

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The transport and intracellular trafficking of heme biosynthesis intermediates are crucial for hemoglobin production, which is a critical process in developing red cells. Here, we profiled gene expression in terminally differentiating murine fetal liver-derived erythroid cells to identify regulators of heme metabolism. We determined that TMEM14C, an inner mitochondrial membrane protein that is enriched in vertebrate hematopoietic tissues, is essential for erythropoiesis and heme synthesis in vivo and in cultured erythroid cells.

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Defects in the availability of haem substrates or the catalytic activity of the terminal enzyme in haem biosynthesis, ferrochelatase (Fech), impair haem synthesis and thus cause human congenital anaemias. The interdependent functions of regulators of mitochondrial homeostasis and enzymes responsible for haem synthesis are largely unknown. To investigate this we used zebrafish genetic screens and cloned mitochondrial ATPase inhibitory factor 1 (atpif1) from a zebrafish mutant with profound anaemia, pinotage (pnt (tq209)).

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The interaction between HIV-1 Nef and the Src kinase Hck in macrophages has been shown to accelerate the progression to AIDS. We previously showed that Nef disturbed the N-glycosylation/trafficking of Fms, a cytokine receptor essential for maintaining macrophages in an anti-inflammatory state, in an Hck-dependent manner. Here, we show the underlying molecular mechanism of this effect.

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Two iron regulatory proteins (IRP1 and IRP2) regulate translation and/or stability of mRNAs encoding proteins required for iron storage, acquisition and utilization. Rather than IRP2 directly sensing iron concentrations, iron has been shown to regulate the level of the SKP1-CUL1-FBXL5 E3 ubiquitin ligase protein complex, which is responsible for IRP2 degradation.

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Mitoferrin-1 (Mfrn1; Slc25a37), a member of the solute carrier family localized in the mitochondrial inner membrane, functions as an essential iron importer for the synthesis of mitochondrial heme and iron-sulfur clusters in erythroblasts. The biochemistry of Mfrn1-mediated iron transport into the mitochondria, however, is poorly understood. Here, we used the strategy of in vivo epitope-tagging affinity purification and mass spectrometry to investigate Mfrn1-mediated mitochondrial iron homeostasis.

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Article Synopsis
  • HIV-1 Nef accelerates AIDS progression by binding to and activating the Src kinase Hck, impacting the trafficking of the Fms cytokine receptor, leading to immune system issues.
  • The study demonstrates that Nef causes Hck to localize excessively to the Golgi apparatus, resulting in a halt in Fms maturation due to improper N-glycosylation.
  • A newly identified Nef-Hck binding blocker, 2c, effectively prevents the Golgi-localization of active Hck and protects against Fms maturation arrest, highlighting the role of Golgi-localized Src kinases in HIV pathogenesis.
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Article Synopsis
  • - Primary effusion lymphoma (PEL) is a type of non-Hodgkin's lymphoma linked to AIDS, caused by the Kaposi sarcoma-associated herpes virus (KSHV/HHV-8), characterized by fluid buildup in body cavities and a poor prognosis.
  • - Research showed that cepharanthine (CEP), a biscoclaurine alkaloid, significantly suppresses cell growth in PEL cell lines and induces cell death by inhibiting the NF-kappaB pathway, which is crucial for cancer development.
  • - An animal model mimicking human PEL demonstrated that administering CEP reduced fluid buildup and organ infiltration without major side effects, suggesting it could be an effective treatment target for PEL.
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