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Taz protects hematopoietic stem cells from an aging-dependent decrease in PU.1 activity
by
Gründl, Marco
, Rodriguez-Fraticelli, Alejo
, Heidel, Florian H.
, Campaner, Stefano
, de Haan, Gerald
, von Eyss, Björn
, Svendsen, Arthur Flohr
, Andreas, Nico
, Hoffmann, Steve
, Tollot, Marie
, Mura-Meszaros, Anna
, Camargo, Fernando D.
, Bystrykh, Leonid V.
, Groth, Marco
, Krishnan, Murali Shyam
, Kim, Kyung Mok
, Neubert, Laura
, Kamradt, Thomas
in
13
/ 45
/ 49/31
/ 49/39
/ 49/91
/ 631/337/572
/ 631/532/1542
/ 64
/ 64/60
/ 96
/ 96/100
/ Age
/ Aging
/ Chloride channels (calcium-gated)
/ Defects
/ Hematopoietic stem cells
/ Humanities and Social Sciences
/ Immune system
/ Markers
/ multidisciplinary
/ PU.1 protein
/ Science
/ Science (multidisciplinary)
/ Stem cell transplantation
/ Stem cells
2022
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Taz protects hematopoietic stem cells from an aging-dependent decrease in PU.1 activity
by
Gründl, Marco
, Rodriguez-Fraticelli, Alejo
, Heidel, Florian H.
, Campaner, Stefano
, de Haan, Gerald
, von Eyss, Björn
, Svendsen, Arthur Flohr
, Andreas, Nico
, Hoffmann, Steve
, Tollot, Marie
, Mura-Meszaros, Anna
, Camargo, Fernando D.
, Bystrykh, Leonid V.
, Groth, Marco
, Krishnan, Murali Shyam
, Kim, Kyung Mok
, Neubert, Laura
, Kamradt, Thomas
in
13
/ 45
/ 49/31
/ 49/39
/ 49/91
/ 631/337/572
/ 631/532/1542
/ 64
/ 64/60
/ 96
/ 96/100
/ Age
/ Aging
/ Chloride channels (calcium-gated)
/ Defects
/ Hematopoietic stem cells
/ Humanities and Social Sciences
/ Immune system
/ Markers
/ multidisciplinary
/ PU.1 protein
/ Science
/ Science (multidisciplinary)
/ Stem cell transplantation
/ Stem cells
2022
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Taz protects hematopoietic stem cells from an aging-dependent decrease in PU.1 activity
by
Gründl, Marco
, Rodriguez-Fraticelli, Alejo
, Heidel, Florian H.
, Campaner, Stefano
, de Haan, Gerald
, von Eyss, Björn
, Svendsen, Arthur Flohr
, Andreas, Nico
, Hoffmann, Steve
, Tollot, Marie
, Mura-Meszaros, Anna
, Camargo, Fernando D.
, Bystrykh, Leonid V.
, Groth, Marco
, Krishnan, Murali Shyam
, Kim, Kyung Mok
, Neubert, Laura
, Kamradt, Thomas
in
13
/ 45
/ 49/31
/ 49/39
/ 49/91
/ 631/337/572
/ 631/532/1542
/ 64
/ 64/60
/ 96
/ 96/100
/ Age
/ Aging
/ Chloride channels (calcium-gated)
/ Defects
/ Hematopoietic stem cells
/ Humanities and Social Sciences
/ Immune system
/ Markers
/ multidisciplinary
/ PU.1 protein
/ Science
/ Science (multidisciplinary)
/ Stem cell transplantation
/ Stem cells
2022
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Taz protects hematopoietic stem cells from an aging-dependent decrease in PU.1 activity
Journal Article
Taz protects hematopoietic stem cells from an aging-dependent decrease in PU.1 activity
2022
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Overview
Specific functions of the immune system are essential to protect us from infections caused by pathogens such as viruses and bacteria. However, as we age, the immune system shows a functional decline that can be attributed in large part to age-associated defects in hematopoietic stem cells (HSCs)—the cells at the apex of the immune cell hierarchy. Here, we find that the Hippo pathway coactivator TAZ is potently induced in old HSCs and protects these cells from functional decline. We identify
Clca3a1
as a TAZ-induced gene that allows us to trace TAZ activity in vivo. Using CLCA3A1 as a marker, we can isolate “young-like” HSCs from old mice. Mechanistically, Taz acts as coactivator of PU.1 and to some extent counteracts the gradual loss of PU.1 expression during HSC aging. Our work thus uncovers an essential role for Taz in a previously undescribed fail-safe mechanism in aging HSCs.
Immune system function declines with age, a consequence of defects in hematopoietic stem cells (HSCs). Here the authors show that TAZ buffers age-related loss of PU.1 activity to maintain HSC functionality and identify the surface protein Clca3a1 as a marker of “young-like” HSCs, even in old mice.
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