Mouse Specific Cleavage-Resistant RAGE Splice Variant

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Mouse Specific Cleavage-Resistant RAGE Splice Variant

Receptor for Advanced Glycation Endproducts (RAGE), a transmembrane, multi-ligand, pattern recognition receptor, has been implicated in a range of inflammatory disease including diabetes, cancers, and cardiovascular disease (CVD) [1]. In addition to the full length receptor, soluble form of RAGE (sRAGE) has been shown to prevent the development of numerous pathologic states, and therefore highl...

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The Mouse-Specific Splice Variant mRAGE_v4 Encodes a Membrane-Bound RAGE That Is Resistant to Shedding and Does Not Contribute to the Production of Soluble RAGE

The receptor for advanced glycation end-products (RAGE) is involved in the onset and progression of several inflammatory diseases. The RAGE primary transcript undergoes numerous alternative splicing (AS) events, some of which are species-specific. Here, we characterize the mouse-specific mRAGE_v4 splice variant, which is conserved in rodents and absent in primates. mRAGE_v4 derives from exon 9 ...

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Complex Tissue-Specific Patterns and Distribution of Multiple RAGE Splice Variants in Different Mammals

The receptor for advanced glycosylation end products (RAGE) is a multiligand receptor involved in diverse cell signaling pathways. Previous studies show that this gene expresses several splice variants in human, mouse, and dog. Alternative splicing (AS) plays an important role in expanding transcriptomic and proteomic diversity, and it has been related to disease. AS is also one of the main evo...

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Mouse RAGE Variant 4 Is a Dominant Membrane Receptor that Does Not Shed to Generate Soluble RAGE

The receptor for advanced glycation end products (RAGE) is a multi-ligand, immunoglobulin-like receptor that has been implicated in aging-associated diseases. Recent studies have demonstrated that both human and murine Ager genes undergo extensive alternative splicing that generates multiple putative transcripts encoding different receptor isoforms. Except for the soluble isoform (esRAGE), the ...

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Silencing survivin splice variant 2B leads to antitumor activity in taxane--resistant ovarian cancer.

PURPOSE To study the role of survivin and its splice variants in taxane-resistant ovarian cancer. EXPERIMENTAL DESIGN We assessed the mRNA levels of survivin splice variants in ovarian cancer cell lines and ovarian tumor samples. siRNAs targeting survivin were designed to silence all survivin splice variants (T-siRNA) or survivin 2B (2B-siRNA) in vitro and orthotopic murine models of ovarian ...

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ژورنال

عنوان ژورنال: PLOS ONE

سال: 2016

ISSN: 1932-6203

DOI: 10.1371/journal.pone.0162120