Gluten Exorphins Promote Cell Proliferation through the Activation of Mitogenic and Pro-Survival Pathways.
Federico ManaiLisa ZanolettiGiulia MorraSamman MansoorFrancesca CarrieroElena BozzolaStella MuscianisiSergio CominciniPublished in: International journal of molecular sciences (2023)
Celiac disease (CD) is a chronic and systemic autoimmune disorder that affects preferentially the small intestine of individuals with a genetic predisposition. CD is promoted by the ingestion of gluten, a storage protein contained in the endosperm of the seeds of wheat, barley, rye, and related cereals. Once in the gastrointestinal (GI) tract, gluten is enzymatically digested with the consequent release of immunomodulatory and cytotoxic peptides, i.e., 33mer and p31-43. In the late 1970s a new group of biologically active peptides, called gluten exorphins (GEs), was discovered and characterized. In particular, these short peptides showed a morphine-like activity and high affinity for the δ-opioid receptor (DOR). The relevance of GEs in the pathogenesis of CD is still unknown. Recently, it has been proposed that GEs could contribute to asymptomatic CD, which is characterized by the absence of symptoms that are typical of this disorder. In the present work, GEs cellular and molecular effects were in vitro investigated in SUP-T1 and Caco-2 cells, also comparing viability effects with human normal primary lymphocytes. As a result, GEs treatments increased tumor cell proliferation by cell cycle and Cyclins activation as well as by induction of mitogenic and pro-survival pathways. Finally, a computational model of GEs interaction with DOR is provided. Altogether, the results might suggest a possible role of GEs in CD pathogenesis and on its associated cancer comorbidities.
Keyphrases
- celiac disease
- cell cycle
- cell proliferation
- nk cells
- amino acid
- multiple sclerosis
- squamous cell carcinoma
- chronic pain
- irritable bowel syndrome
- anti inflammatory
- dna methylation
- oxidative stress
- gene expression
- papillary thyroid
- cell cycle arrest
- drug induced
- risk assessment
- peripheral blood
- cell death
- pi k akt
- depressive symptoms
- mass spectrometry
- signaling pathway
- heavy metals
- copy number
- free survival