Clathrin-Mediated Endocytosis in Plants: Historical to Modern Advances. [PDF]
Mattson T, Bednarek S, Johnson A.
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Piecemeal mitochondrial degradation in plants: a coordination between mitochondrial dynamics and mitophagosome formation. [PDF]
Ma J, Li C, Zhuang X.
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In vivo and molecular docking investigation of the novel anti-inflammatory and mitochondrial mechanisms underlying the renoprotective effects of resmetirom and curcumin in gentamicin-induced renal toxicity in rats. [PDF]
Ahmed AS +3 more
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Transcriptomic profiling of a commensal Escherichia coli lysogen in simulated intestinal fluid reveals broad changes in both core and accessory regions of the genome. [PDF]
Pick K, Raivio TL.
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A selective and augmentable butyrate-FFAR2 signal circuitry programs the cellular identity of enteroendocrine L-cells. [PDF]
Hirdaramani A +3 more
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COST1 stimulates RHD3 GTPase activity to maintain ER morphology and plant growth in <i>Arabidopsis</i>. [PDF]
Wang J +17 more
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Functional diversity in the dynamin family
Trends in Cell Biology, 1999The function of the GTPase dynamin has been discussed for several years. It clearly plays a role in vesicle budding, but, despite recent insights, precisely how it functions in this process is still a matter of debate. In addition, it is now clear that dynamin is a member of a large protein family, present in a variety of cellular locations where ...
Alexander Van Der Bliek
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I. Introduction THE transport of proteins, hormones, and nutrients to different locations within a cell is an essential process for many of the functions of eukaryotic cells. It is of particular importance in complex multicellular organisms to enable the cells to communicate with one another.
J P, Liu, P J, Robinson
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The GTPase dynamin is essential for endocytosis, but its mechanism of action remains uncertain. Structures of its GTPase domain, as well as that of assembled dynamin, have led to major advances in understanding the structural basis of its mode of action.
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