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Role of SEL1L in the progression of solid tumors, with a special focus on its recent therapeutic potential

Darmadi DarmadiDepartment of Internal Medicine, Faculty of Medicine Universitas Sumatera Utara Medan IndonesiaRaed Obaid SalehDepartment of Medical Laboratory Techniques Al‐Maarif University College Al‐Anbar IraqEnwa Felix OghenemaroDepartment of Pharmaceutical Microbiology, Faculty of Pharmacy Delta State University Abraka NigeriaMaha ShakirDepartment of Medical Laboratories Technology AL‐Nisour University College Baghdad IraqAhmed HjaziDepartment of Medical Laboratory, College of Applied Medical Sciences Prince Sattam bin Abdulaziz University Al‐Kharj Saudi ArabiaZahraa F. HassanCollege of Dentistry Al‐Ayen University Thi‐Qar IraqAhmed Hussein ZwamelMedical laboratory technique college the Islamic University Najaf IraqSanoeva MatlyubaDepartment of Neurology Vice rektor of Bukhara State Medical Institute Bukhara UzbekistanMahamedha DeorariUttaranchal Institute of Pharmaceutical Sciences Uttaranchal University Dehradun IndiaShamam Kareem OudahCollege of Pharmacy/National University of Science and Technology Dhi Qar Iraq
ABI

Аннотация

Since suppressor/enhancer of Lin-12-like (SEL1L) was cloned in 1997, various pieces of evidence from lower species suggest it plays a significant role in protein degradation via the ubiquitin-proteasome system. The relevance of SEL1L in many aspects of malignant transformation and tumorigenic events has been the subject of research, which has shown compelling in vitro and in vivo findings relating its altered expression to changes in tumor aggressiveness. The Endoplasmic Reticulum (ER) in tumor cells is crucial for preserving cellular proteostasis by inducing the unfolded protein response (UPR), a stress response. A crucial component of the UPR is ER-associated degradation (ERAD), which guards against ER stress-induced apoptosis and the removal of unfolded or misfolded proteins by the ubiquitin-proteasome system. As a protein stabilizer of HMG-CoA reductase degradation protein 1 (HRD1), one of the main components of ERAD, SEL1L plays an important role in ER homeostasis. Notably, the expression levels of these two proteins fluctuate independently in various cancer types, yet changes in their expression affect the levels of other associated proteins during cancer pathogenesis. Recent studies have also outlined the function of SEL1L in cancer medication resistance. This review explores the value of targeting SEL1L as a novel treatment approach for cancer, focusing on the molecular processes of SEL1L and its involvement in cancer etiology.

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