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TLE4 Is a Critical Mediator of Osteoblast and Runx2-Dependent Bone Development
by
Yamin, Rae’e
, Holland, Carl
, Giampietro, Philip F.
, Raggio, Cathleen L.
, Sweetser, David A.
, Theodorou, Evangelos
, Shin, Thomas H.
in
bone calcification
/ bone mineralization
/ Cell and Developmental Biology
/ osteoblast
/ Runx2
/ Tle4
/ Tle4-Runx axis
2021
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TLE4 Is a Critical Mediator of Osteoblast and Runx2-Dependent Bone Development
by
Yamin, Rae’e
, Holland, Carl
, Giampietro, Philip F.
, Raggio, Cathleen L.
, Sweetser, David A.
, Theodorou, Evangelos
, Shin, Thomas H.
in
bone calcification
/ bone mineralization
/ Cell and Developmental Biology
/ osteoblast
/ Runx2
/ Tle4
/ Tle4-Runx axis
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
TLE4 Is a Critical Mediator of Osteoblast and Runx2-Dependent Bone Development
by
Yamin, Rae’e
, Holland, Carl
, Giampietro, Philip F.
, Raggio, Cathleen L.
, Sweetser, David A.
, Theodorou, Evangelos
, Shin, Thomas H.
in
bone calcification
/ bone mineralization
/ Cell and Developmental Biology
/ osteoblast
/ Runx2
/ Tle4
/ Tle4-Runx axis
2021
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TLE4 Is a Critical Mediator of Osteoblast and Runx2-Dependent Bone Development
Journal Article
TLE4 Is a Critical Mediator of Osteoblast and Runx2-Dependent Bone Development
2021
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Overview
Healthy bone homeostasis hinges upon a delicate balance and regulation of multiple processes that contribute to bone development and metabolism. While examining hematopoietic regulation by
Tle4
, we have uncovered a previously unappreciated role of
Tle4
on bone calcification using a novel
Tle4
null mouse model. Given the significance of osteoblasts in both hematopoiesis and bone development, this study investigated how loss of
Tle4
affects osteoblast function. We used dynamic bone formation parameters and microCT to characterize the adverse effects of
Tle4
loss on bone development. We further demonstrated loss of
Tle4
impacts expression of several key osteoblastogenic genes, including
Runx2
,
Oc
, and
Ap
, pointing toward a potential novel mechanism for
Tle4
-dependent regulation of mammalian bone development in collaboration with the RUNX family members.
Publisher
Frontiers Media S.A
Subject
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