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COX-2 inhibits anoikis by activation of the PI-3K/Akt pathway in human bladder cancer cells

Choi EM, Kwak SJ, Kim YM, Ha KS, Kim JI, Lee SW, Han JA

  • KMID: 1056232
  • Exp Mol Med.
  • 2005 Jun;37(3):199-203.
Cyclooxygenase-2 (COX-2) has been reported to be associated with tumor development and progression as well as to protect cells from apoptosis induced by various cellular stresses. Through a tetracycline-regulated COX-2...
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O-GlcNAc modification on IRS-1 and Akt2 by PUGNAc inhibits their phosphorylation and induces insulin resistance in rat primary adipocytes

Park SY, Ryu J, Lee W

  • KMID: 1056235
  • Exp Mol Med.
  • 2005 Jun;37(3):220-229.
It has been known that O-linked beta-N-acetylglucosamine (O-GlcNAc) modification of proteins plays an important role in transcription, translation, nuclear transport and signal transduction. The increased flux of glucose through the...
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The Levels of MDM2 Protein Are Decreased by a Proteasome-Mediated Proteolysis Prior to Caspase-3-Dependent pRb and PARP Cleavages

Cho JW, Park JC, Lee JC, Kwon TK, Park JW, Baek WK, Suh SI, Suh MH

MDM2 is a substrate of caspase-3 in p53-mediated apoptosis. In addition, MDM2 mediates its own ubiquitination in a RING finger-dependent manner. Thus, we investigated whether MDM2 is degraded through a...
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Modulation of the caveolin-3 and Akt status in caveolae by insulin resistance in H9c2 cardiomyoblasts

Ha H, Pak Y

  • KMID: 1056228
  • Exp Mol Med.
  • 2005 Jun;37(3):169-178.
We investigated glucose uptake and the translocation of Akt and caveolin-3 in response to insulin in H9c2 cardiomyoblasts exposed to an experimental insulin resistance condition of 100 nM insulin in...
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Expression of Down Stream Molecules of RET (p-ERK, p-p38 MAPK, p-JNK and p-AKT) in Papillary Thyroid Carcinomas

Shin E, Hong SW, Kim SH, Yang WI

  • KMID: 2428328
  • Yonsei Med J.
  • 2004 Apr;45(2):306-313.
To evaluate the roles of 4 putative downstream molecules (ERK, p38 MAPK, JNK and AKT) of the RET signal pathway in the tumorigenesis of papillary carcinomas, the expression patterns of...
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Hypoxia activates the cyclin D1 promoter via the Jak2/STAT5b pathway in breast cancer cells

Joung YH, Lim EJ, Lee MY, Park JH, Ye SK, Park EU, Kim SY, Zhang Z, Lee KJ, Park DK, Park T, Moon WK, Yang YM

  • KMID: 1093470
  • Exp Mol Med.
  • 2005 Aug;37(4):353-364.
Hypoxia, a common consequence of solid tumor growth in breast cancer or other cancers, serves to propagate a cascade of molecular pathways which include angiogenesis, glycolysis, and various cellcycle control...
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