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首页> 外文期刊>Arthritis and Rheumatism >beta-Catenin Regulates Parathyroid Hormone/Parathyroid Hormone-Related Protein Receptor Signals and Chondrocyte Hypertrophy Through Binding to the Intracellular C-Terminal Region of the Receptor
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beta-Catenin Regulates Parathyroid Hormone/Parathyroid Hormone-Related Protein Receptor Signals and Chondrocyte Hypertrophy Through Binding to the Intracellular C-Terminal Region of the Receptor

机译:β-连环蛋白通过结合受体的胞内C末端区域调节甲状旁腺激素/甲状旁腺激素相关的蛋白质受体信号和软骨细胞肥大

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Objective. To investigate the underlying mechanisms of action and functional relevance of /3-catenin in chondrocytes, by examining the role of /3-catenin as a novel protein that interacts with the intracellular C-terminal portion of the parathyroid hormone (PTH)/ PTH-related protein (PTHrP) receptor type 1 (PTHR-1). Methods. The beta-catenin-PTHR-1 binding region was determined with deletion and mutagenesis analyses of the PTHR1 C-terminus, using a mammalian two-hybrid assay. Physical interactions between these 2 molecules were examined with an in situ proximity ligation assay and immunostaining. To assess the effects of gain- and loss-of-function of fi-catenin, transfection experiments were performed to induce overexpression of the constitutively active form of beta-catenin (ca-beta-catenin) and to block (5-catenin activity with small interfering RNA, in cells cotransfected with either wild-type PTHR1 or mutant forms (lacking binding to beta-catenin). Activation of the G protein alpha subunits Galphas and Galphaq in the cells was determined by measurement of the intracellular cAMP accumulation and intracellular Ca2+ concentration, while activation of canonical Wnt pathways was assessed using a TOPflash reporter assay. Results. In differentiated chondrocytes, /3-catenin physically interacted and colocalized with the cell membrane-specific region of PTHR-1 (584-589). Binding of j8-catenin to PTHR-1 caused suppression of the G^/cAMP pathway and enhancement of the G^q/Ca2"1" pathway, without affecting the canonical Wnt pathway. Inhibition of CollOal messenger RNA (mRNA) expression by PTH was restored by overexpression of ca-j3-catenin, even after blockade of the canonical Wnt pathway, and CollOal mRNA expression was further decreased by knockout of (5-catenin (via the Cre recom-binase) in chondrocytes from beta-cateran-floxed mice. Mutagenesis analyses to block the binding of /3-catenin to PTHR1 caused an inhibition of chondrocyte hypertrophy markers. Conclusion. beta-catenin binds to the PTHR-1 C-tail and switches the downstream signaling pathway from Gas/cAMP to Gaq/Ca2+, which is a possible mechanism by which chondrocyte hypertrophy may be regulated through the PTH/PTHrP signal independent of the canonical Wnt pathway.
机译:目的。通过研究/ 3-catenin作为与甲状旁腺激素(PTH)/ PTH-的细胞内C末端部分相互作用的新型蛋白的作用,研究软骨细胞中3-3-catenin的潜在作用机制和功能相关性相关蛋白(PTHrP)受体1型(PTHR-1)。方法。使用哺乳动物两杂交试验,通过对PTHR1 C末端进行缺失和诱变分析,确定了β-catenin-PTHR-1结合区。这两个分子之间的物理相互作用通过原位邻近连接测定和免疫染色进行了检查。为了评估fi-catenin功能获得和功能丧失的影响,进行了转染实验以诱导β-catenin(ca-beta-catenin)的组成型活性形式的过表达并阻断(5-catenin的活性在野生型PTHR1或突变形式(缺乏与β-catenin的结合)共转染的细胞中产生小的干扰RNA,通过测量细胞内cAMP积累和细胞内Ca2 +确定细胞中G蛋白α亚基Galphas和Galphaq的活化结果:在分化的软骨细胞中,/ 3-catenin与PTHR-1(584-589)的细胞膜特异性区域发生物理相互作用并共定位,这是在分化的软骨细胞中进行的。 -catenin对PTHR-1的作用是抑制G ^ / cAMP途径并增强G ^ q / Ca2“ 1”途径,而不影响经典的Wnt途径。抑制CollOal信使RNA(mRNA)的表达即使在阻断经典的Wnt途径后,PTH仍能通过ca-j3-catenin的过表达而恢复,并且通过从β-cateran软骨细胞中(5-catenin(通过Cre重组酶)敲除)进一步降低CollOal mRNA表达。狐狸老鼠。诱变分析可阻止/ 3-catenin与PTHR1的结合,从而抑制软骨细胞肥大标记。结论。 β-catenin与PTHR-1 C-tail结合并将下游信号通路从Gas / cAMP转换为Gaq / Ca2 +,这是一种可能的机制,通过该机制,软骨细胞肥大可通过独立于经典Wnt的PTH / PTHrP信号进行调节途径。

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