Profiling of Unfolded Protein Response Markers and Effect of IRE1α-specific Inhibitor in Pituitary Neuroendocrine Tumor

Author:

Morita Shuhei1ORCID,Uraki Shinsuke1ORCID,Ariyasu Hiroyuki2,Tsuji Tomoya1,Doi Asako1,Furuta Hiroto1ORCID,Yamoto Toshikazu3,Nakao Naoyuki3,Akamizu Takashi4,Matsuoka Taka-aki1

Affiliation:

1. First Department of Internal Medicine, Wakayama Medical University , Wakayama 641-8509 , Japan

2. Department of Diabetes and Endocrinology, Shizuoka General Hospital , Shizuoka 420-8527 , Japan

3. Department of Neurological Surgery, Wakayama Medical University , Wakayama 641-8509 , Japan

4. Department of Internal Medicine, Kuma Hospital , Kobe 650-0011 , Japan

Abstract

Abstract Context Inositol-requiring enzyme 1α (IRE1α) and PKR-like ER kinase (PERK), which are endoplasmic reticulum (ER) membrane proteins, regulate the unfolded protein response (UPR). These molecules have recently gained attention as a novel therapeutic target in secretory tumors. The roles of the UPR in pituitary neuroendocrine tumors (PitNETs) are unclear. Objective To clarify UPR profiling of PitNETs and to investigate the effect of pharmacological modulation of UPR by KIRA8, a newly developed IRE1α-specific inhibitor. Methods In 131 patients with PitNETs, we evaluated RNA expression of UPR markers in PitNETs and their clinical phenotypes. Using GH3 cells, we examined the effects of KIRA8 and its combination with octreotide on UPR profiling, cell growth, and apoptosis. Results Cytoprotective adaptive-UPR (A-UPR) markers were more increased in functioning PitNETs (FPitNETs, n = 112) than in nonfunctioning PitNETs (NFPitNETs, n = 19), while there was no difference in proapoptotic terminal-UPR (T-UPR) markers. Similarly, overt somatotroph tumors (STs, acromegaly, n = 11) increased A-UPR compared with silent STs (n = 10). In STs, serum IGF-1 levels were inversely correlated with Txnip mRNA expression, a representative T-UPR marker. KIRA8 inhibited cell growth and facilitated apoptosis in GH3 cells with increased expressions of T-UPR markers, which was enhanced by the combination with octreotide. Octreotide increased mRNA expression of Txnip and Chop, but decreased spliced Xbp1 under ER stress. Octreotide is suggested to inhibit activation of IRE1α but to reciprocally induce T-UPR under PERK. Conclusion UPR markers in FPitNETs are implicated as dominant A-UPR but blunted T-UPR. KIRA8, enhanced with octreotide, unbalances the UPR, leading to antitumor effects. Targeting IRE1α may provide a novel strategy to treat PitNETs.

Funder

JSPS KAKENHI

Takeda Science Foundation

Publisher

The Endocrine Society

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