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Serum concentrations of MCP-1 and IL-6 in combination predict the presence of coronary artery disease and mortality in subjects undergoing coronary angiography
Authors:Mohammad Tajfard  Latiffah A. Latiff  Hamid Reza Rahimi  Mohsen Moohebati  Mehdi Hasanzadeh  Ahmad Sarreshtehdar Emrani  Habibollah Esmaeily  Ali Taghipour  Sayed Reza Mirhafez  Gordon A. Ferns  Maryam Mardan-Nik  Elham Mohammadzadeh  Amir Avan  Parichehr Hanachi  Majid Ghayour-Mobarhan
Affiliation:1.School of Life Sciences,Gwangju Institute of Science & Technology (GIST),Gwangju,Republic of Korea
Abstract:The UBA–UBX domain-containing proteins can interact with ubiquitinated substrates and p97 during endoplasmic reticulum-associated degradation (ERAD). Here, we found that the expressions of all UBA–UBX genes p47, SAKS1, UBXD8, FAF1, and UBXD7 were elevated upon ER stress, albeit with different levels. Of which p47, SAKS1, and UBXD8 are ‘immediate’ respondents whereas FAF1 and UBXD7 were ‘late’ respondents to ER stress. Interestingly, the expression of specific UBA–UBX genes were altered in cells stably expressing three different ERAD substrates such as α-TCR, α1-antitrypsin, and δCD3. We first found that p47 and UBXD8 expression levels were increased in α-TCR and α1-antitrypsin stable cell lines, respectively, whereas SAKS1 expression level was reduced in all the three ERAD substrates tested. Of note, we also found p47 promotes, whereas SASK1 delays the degradation of a single ERAD substrate, α-TCR. Additionally, we found that SAKS1 selectively inhibits the degradation of ERAD substrates without affecting cytosolic proteasomal substrates. Taken together, our results identified that UBA–UBX proteins possess substrate selectivity and opposite role of two different UBA–UBX proteins in the degradation of a single ERAD substrate.
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