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The Journal of Biological Chemistry
|
October 8, 2021
The cell surface hyaluronidase TMEM2 is essential for systemic hyaluronan catabolism and turnover
Yuki Tobisawa, Naoki Fujita, Hayato Yamamoto, et al.
The Journal of Biological Chemistry
|
March 2, 2017
A mammalian homolog of the zebrafish transmembrane protein 2 (TMEM2) is the long-sought-after cell-surface hyaluronidase
Hayato Yamamoto, Yuki Tobisawa, Toshihiro Inubushi, et al.
The Journal of Biological Chemistry
|
March 1, 2021
The cell surface hyaluronidase TMEM2 regulates cell adhesion and migration via degradation of hyaluronan at focal adhesion sites
Fumitoshi Irie, Yuki Tobisawa, Ayako Murao, et al.
Science (New York, N.Y.)
|
November 8, 2003
Mammalian brain morphogenesis and midline axon guidance require heparan sulfate
Masaru Inatani, Fumitoshi Irie, Andrew S Plump, et al.
Nature Neuroscience
|
December 24, 2002
Control of hippocampal dendritic spine morphology through ephrin-A3/EphA4 signaling
Keith K Murai, Louis N Nguyen, Fumitoshi Irie, et al.
The Journal of Biological Chemistry
|
August 1, 2023
TMEM2 is a bona fide hyaluronidase possessing intrinsic catalytic activity
Takuma Narita, Yuki Tobisawa, Andrey Bobkov, et al.
The Journal of Biological Chemistry
|
April 21, 2010
Conditional ablation of the heparan sulfate-synthesizing enzyme Ext1 leads to dysregulation of bone morphogenic protein signaling and severe skeletal defects
Yoshihiro Matsumoto, Kazu Matsumoto, Fumitoshi Irie, et al.
JCI Insight
|
February 9, 2018
Osteoblastic heparan sulfate regulates osteoprotegerin function and bone mass
Satoshi Nozawa, Toshihiro Inubushi, Fumitoshi Irie, et al.
Plos Genetics
|
July 15, 2022
The cell surface hyaluronidase TMEM2 plays an essential role in mouse neural crest cell development and survival
Toshihiro Inubushi, Yuichiro Nakanishi, Makoto Abe, et al.
The Journal of Biological Chemistry
|
July 26, 2021
Heparan sulfate promotes differentiation of white adipocytes to maintain insulin sensitivity and glucose homeostasis
Takuro Matsuzawa, Masanobu Morita, Ai Shimane, et al.
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of 3
Search research articles
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Showing results (11-20 of 25) with videos related to
Sort By:
Page
of 3
The Journal of Biological Chemistry
|
October 8, 2021
The cell surface hyaluronidase TMEM2 is essential for systemic hyaluronan catabolism and turnover
Yuki Tobisawa, Naoki Fujita, Hayato Yamamoto, et al.
The Journal of Biological Chemistry
|
March 2, 2017
A mammalian homolog of the zebrafish transmembrane protein 2 (TMEM2) is the long-sought-after cell-surface hyaluronidase
Hayato Yamamoto, Yuki Tobisawa, Toshihiro Inubushi, et al.
The Journal of Biological Chemistry
|
March 1, 2021
The cell surface hyaluronidase TMEM2 regulates cell adhesion and migration via degradation of hyaluronan at focal adhesion sites
Fumitoshi Irie, Yuki Tobisawa, Ayako Murao, et al.
Science (New York, N.Y.)
|
November 8, 2003
Mammalian brain morphogenesis and midline axon guidance require heparan sulfate
Masaru Inatani, Fumitoshi Irie, Andrew S Plump, et al.
Nature Neuroscience
|
December 24, 2002
Control of hippocampal dendritic spine morphology through ephrin-A3/EphA4 signaling
Keith K Murai, Louis N Nguyen, Fumitoshi Irie, et al.
The Journal of Biological Chemistry
|
August 1, 2023
TMEM2 is a bona fide hyaluronidase possessing intrinsic catalytic activity
Takuma Narita, Yuki Tobisawa, Andrey Bobkov, et al.
The Journal of Biological Chemistry
|
April 21, 2010
Conditional ablation of the heparan sulfate-synthesizing enzyme Ext1 leads to dysregulation of bone morphogenic protein signaling and severe skeletal defects
Yoshihiro Matsumoto, Kazu Matsumoto, Fumitoshi Irie, et al.
JCI Insight
|
February 9, 2018
Osteoblastic heparan sulfate regulates osteoprotegerin function and bone mass
Satoshi Nozawa, Toshihiro Inubushi, Fumitoshi Irie, et al.
Plos Genetics
|
July 15, 2022
The cell surface hyaluronidase TMEM2 plays an essential role in mouse neural crest cell development and survival
Toshihiro Inubushi, Yuichiro Nakanishi, Makoto Abe, et al.
The Journal of Biological Chemistry
|
July 26, 2021
Heparan sulfate promotes differentiation of white adipocytes to maintain insulin sensitivity and glucose homeostasis
Takuro Matsuzawa, Masanobu Morita, Ai Shimane, et al.
Page
of 3