C2 Domains of Munc13-4 Are Crucial for Ca 2+ -Dependent Degranulation and Cytotoxicity in NK Cells

In the immune system, degranulation/exocytosis from lymphocytes is crucial for life through facilitating eradication of infected and malignant cells. Dysfunction of the NK cell exocytosis process has been implicated with devastating immune diseases, such as familial hemophagocytic lymphohistiocytosi...

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Veröffentlicht in:The Journal of immunology (1950) 2018-07, Vol.201 (2), p.700
Hauptverfasser: Bin, Na-Ryum, Ma, Ke, Tien, Chi-Wei, Wang, Siyan, Zhu, Dan, Park, Seungmee, Turlova, Ekaterina, Sugita, Kyoko, Shirakawa, Ryutaro, van der Sluijs, Peter, Horiuchi, Hisanori, Sun, Hong-Shuo, Monnier, Philippe P, Gaisano, Herbert Y, Sugita, Shuzo
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container_title The Journal of immunology (1950)
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creator Bin, Na-Ryum
Ma, Ke
Tien, Chi-Wei
Wang, Siyan
Zhu, Dan
Park, Seungmee
Turlova, Ekaterina
Sugita, Kyoko
Shirakawa, Ryutaro
van der Sluijs, Peter
Horiuchi, Hisanori
Sun, Hong-Shuo
Monnier, Philippe P
Gaisano, Herbert Y
Sugita, Shuzo
description In the immune system, degranulation/exocytosis from lymphocytes is crucial for life through facilitating eradication of infected and malignant cells. Dysfunction of the NK cell exocytosis process has been implicated with devastating immune diseases, such as familial hemophagocytic lymphohistiocytosis, yet the underlying molecular mechanisms of such processes have remained elusive. In particular, although the lytic granule exocytosis from NK cells is strictly Ca -dependent, the molecular identity of the Ca sensor has yet to be identified. In this article, we show multiple lines of evidence in which point mutations in aspartic acid residues in both C2 domains of human Munc13-4, whose mutation underlies familial hemophagocytic lymphohistiocytosis type 3, diminished exocytosis with dramatically altered Ca sensitivity in both mouse primary NK cells as well as rat mast cell lines. Furthermore, these mutations within the C2 domains severely impaired NK cell cytotoxicity against malignant cells. Total internal reflection fluorescence microscopy analysis revealed that the mutations strikingly altered Ca dependence of fusion pore opening of each single granule and frequency of fusion events. Our results demonstrate that both C2 domains of Munc13-4 play critical roles in Ca -dependent exocytosis and cytotoxicity by regulating single-granule membrane fusion dynamics in immune cells.
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Dysfunction of the NK cell exocytosis process has been implicated with devastating immune diseases, such as familial hemophagocytic lymphohistiocytosis, yet the underlying molecular mechanisms of such processes have remained elusive. In particular, although the lytic granule exocytosis from NK cells is strictly Ca -dependent, the molecular identity of the Ca sensor has yet to be identified. In this article, we show multiple lines of evidence in which point mutations in aspartic acid residues in both C2 domains of human Munc13-4, whose mutation underlies familial hemophagocytic lymphohistiocytosis type 3, diminished exocytosis with dramatically altered Ca sensitivity in both mouse primary NK cells as well as rat mast cell lines. Furthermore, these mutations within the C2 domains severely impaired NK cell cytotoxicity against malignant cells. Total internal reflection fluorescence microscopy analysis revealed that the mutations strikingly altered Ca dependence of fusion pore opening of each single granule and frequency of fusion events. 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title C2 Domains of Munc13-4 Are Crucial for Ca 2+ -Dependent Degranulation and Cytotoxicity in NK Cells
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