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Biochemical and Biophysical Research Communications
|
October 13, 2009
Adrm1 interacts with Atp6v0d2 and regulates osteoclast differentiation
Taesoo Kim, Hyun-Il Ha, Nacksung Kim, et al.
Journal of Immunology (Baltimore, Md. : 1950)
|
September 20, 2006
Cutting edge: T cell requirement for CD28 costimulation is due to negative regulation of TCR signals by PTEN
Jodi L Buckler, Patrick T Walsh, Paige M Porrett, et al.
British Journal of Haematology
|
February 14, 2002
Myeloma interacts with the bone marrow microenvironment to induce osteoclastogenesis and is dependent on osteoclast activity
Shmuel Yaccoby, Roger N Pearse, Cherie L Johnson, et al.
Plos One
|
December 30, 2008
TRAF6 autoubiquitination-independent activation of the NFkappaB and MAPK pathways in response to IL-1 and RANKL
Matthew C Walsh, Gregory K Kim, Paul L Maurizio, et al.
Journal of Immunology (Baltimore, Md. : 1950)
|
June 17, 2020
Mice Lacking the Purinergic Receptor P2X5 Exhibit Defective Inflammasome Activation and Early Susceptibility to <i>Listeria monocytogenes</i>
Yun Hee Jeong, Matthew C Walsh, Jiyeon Yu, et al.
BMB Reports
|
August 7, 2019
Flrt2 is involved in fine-tuning of osteoclast multinucleation
Jumpei Shirakawa, Noriko Takegahara, Hyunsoo Kim, et al.
Nature Immunology
|
February 6, 2007
Medullary thymic epithelial cells expressing Aire represent a unique lineage derived from cells expressing claudin
Yoko Hamazaki, Harumi Fujita, Takashi Kobayashi, et al.
BMB Reports
|
July 9, 2020
Protocadherin-7 contributes to maintenance of bone homeostasis through regulation of osteoclast multinucleation
Hyunsoo Kim, Noriko Takegahara, Matthew C Walsh, et al.
Aging Cell
|
May 25, 2012
Impairment of osteoblast differentiation due to proliferation-independent telomere dysfunction in mouse models of accelerated aging
Haitao Wang, Qijun Chen, Seoung-Hoon Lee, et al.
FEBS Letters
|
August 22, 2019
Methylosome protein 50 associates with the purinergic receptor P2X5 and is involved in osteoclast maturation
Hyunsoo Kim, Matthew C Walsh, Jiyeon Yu, et al.
Page
of 16
Search research articles
Search
Showing results (51-60 of 159) with videos related to
Sort By:
Page
of 16
Biochemical and Biophysical Research Communications
|
October 13, 2009
Adrm1 interacts with Atp6v0d2 and regulates osteoclast differentiation
Taesoo Kim, Hyun-Il Ha, Nacksung Kim, et al.
Journal of Immunology (Baltimore, Md. : 1950)
|
September 20, 2006
Cutting edge: T cell requirement for CD28 costimulation is due to negative regulation of TCR signals by PTEN
Jodi L Buckler, Patrick T Walsh, Paige M Porrett, et al.
British Journal of Haematology
|
February 14, 2002
Myeloma interacts with the bone marrow microenvironment to induce osteoclastogenesis and is dependent on osteoclast activity
Shmuel Yaccoby, Roger N Pearse, Cherie L Johnson, et al.
Plos One
|
December 30, 2008
TRAF6 autoubiquitination-independent activation of the NFkappaB and MAPK pathways in response to IL-1 and RANKL
Matthew C Walsh, Gregory K Kim, Paul L Maurizio, et al.
Journal of Immunology (Baltimore, Md. : 1950)
|
June 17, 2020
Mice Lacking the Purinergic Receptor P2X5 Exhibit Defective Inflammasome Activation and Early Susceptibility to <i>Listeria monocytogenes</i>
Yun Hee Jeong, Matthew C Walsh, Jiyeon Yu, et al.
BMB Reports
|
August 7, 2019
Flrt2 is involved in fine-tuning of osteoclast multinucleation
Jumpei Shirakawa, Noriko Takegahara, Hyunsoo Kim, et al.
Nature Immunology
|
February 6, 2007
Medullary thymic epithelial cells expressing Aire represent a unique lineage derived from cells expressing claudin
Yoko Hamazaki, Harumi Fujita, Takashi Kobayashi, et al.
BMB Reports
|
July 9, 2020
Protocadherin-7 contributes to maintenance of bone homeostasis through regulation of osteoclast multinucleation
Hyunsoo Kim, Noriko Takegahara, Matthew C Walsh, et al.
Aging Cell
|
May 25, 2012
Impairment of osteoblast differentiation due to proliferation-independent telomere dysfunction in mouse models of accelerated aging
Haitao Wang, Qijun Chen, Seoung-Hoon Lee, et al.
FEBS Letters
|
August 22, 2019
Methylosome protein 50 associates with the purinergic receptor P2X5 and is involved in osteoclast maturation
Hyunsoo Kim, Matthew C Walsh, Jiyeon Yu, et al.
Page
of 16