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2. PSMC5 insufficiency and P320R mutation impair proteasome function. [38776958]
3. Unveiling the crucial neuronal role of the proteasomal ATPase subunit gene PSMC5 in neurodevelopmental proteasomopathies. [38293138]
4. PSMC5 Promotes Proliferation and Metastasis of Colorectal Cancer by Activating Epithelial-Mesenchymal Transition Signaling and Modulating Immune Infiltrating Cells. [34336824]
5. Identification of a quality-control factor that monitors failures during proteasome assembly. [34446601]
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文献和实验2. PSMC5 insufficiency and P320R mutation impair proteasome function. [38776958]
3. Unveiling the crucial neuronal role of the proteasomal ATPase subunit gene PSMC5 in neurodevelopmental proteasomopathies. [38293138]
4. PSMC5 Promotes Proliferation and Metastasis of Colorectal Cancer by Activating Epithelial-Mesenchymal Transition Signaling and Modulating Immune Infiltrating Cells. [34336824]
5. Identification of a quality-control factor that monitors failures during proteasome assembly. [34446601]
During oogenesis, Xenopus oocytes accumulate large amounts of storage proteins that—after fertilization—provide the developing embryo with building blocks and energy metabolites. The size of the fully developed oocyte (diameter, 1.2 mm
The Physiology of the Xenopus laevis Ovary
Xenopus laevis has been used for many decades to study oocyte development and maturation. The Xenopus oocytes’ large size, relative abundance, and clearly defined progression of physical characteristics from oogonia to eggs make them ideal
Manipulation of Gene Function in Xenopus laevis
Xenopus laevis embryos are particularly well suited to address questions requiring either knockdown or overexpression of genes in a tissue-specific fashion during vertebrate embryonic development. These manipulations are achieved by targeted
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