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  • The mammalian rhomboid protein RHBDL4 protects against endoplasmic reticulum stress by regulating the morphology and distribution of ER sheets.

The mammalian rhomboid protein RHBDL4 protects against endoplasmic reticulum stress by regulating the morphology and distribution of ER sheets.

The Journal of biological chemistry (2022-04-19)
Viorica L Lastun, Clémence Levet, Matthew Freeman
要旨

In metazoans, the architecture of the endoplasmic reticulum (ER) differs between cell types and undergoes major changes throughout the cell cycle and according to physiological needs. Although much is known about how the different ER morphologies are generated and maintained, especially ER tubules, how context-dependent changes in ER shape and distribution are regulated and the factors involved are less well characterized, as are the factors that contribute to the positioning of the ER within the cell. By overexpression and KO experiments, we show that the levels of RHBDL4, an ER-resident rhomboid protease, modulate the shape and distribution of the ER, especially during conditions that require rapid changes in the ER sheet distribution, such as ER stress. We demonstrate that RHBDL4 interacts with cytoskeleton-linking membrane protein 63 (CLIMP-63), a protein involved in ER sheet stabilization, as well as with the cytoskeleton. Furthermore, we found that mice lacking RHBDL4 are sensitive to ER stress and develop liver steatosis, a phenotype associated with unresolved ER stress. Taken together, these data suggest a new physiological role for RHBDL4 and also imply that this function does not require its enzymatic activity.

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Sigma-Aldrich
ツニカマイシン 放線菌由来
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ノコダゾール, ≥99% (TLC), powder
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抗βアクチン−ペルオキシダーゼ抗体、マウスモノクローナル マウス宿主抗体, clone AC-15, purified from hybridoma cell culture
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抗GAPDH抗体、マウスモノクローナル, clone GAPDH-71.1, purified from hybridoma cell culture
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ProteoExtract® Cytoskeleton Enrichment and Isolation Kit, This kit provides cytoskeleton purification detergent buffers, sufficient for extraction from ten 100 mm culture dishes, that retain focal adhesion & actin-associated proteins while removing soluble cytoplasmic & nuclear proteins from the cell.