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ARC5 | Dynamin-like protein ARC5; Probable GTPase component of both plastid and peroxisme division machinery. Required for the last steps of plastid division specifically in mesophyll-cell, when the narrow isthmus breaks, facilitating the separation of the daughter plastids. Necessary for peroxisome activities. Seems to influence stromule (stroma-filled tubular extensions of the plastid envelope membrane) length and frequency. Belongs to the TRAFAC class dynamin-like GTPase superfamily. Dynamin/Fzo/YdjA family. (777 aa) | ||||
UFD1 | Ubiquitin fusion degradation 1. (340 aa) | ||||
SFH2 | Phosphatidylinositol/phosphatidylcholine transfer protein SFH2; Required for transport of secretory proteins from the Golgi complex (By similarity). Catalyzes the transfer of phosphatidylinositol and phosphatidylcholine between membranes in vitro. (554 aa) | ||||
C7A10.200 | Pectinesterase like protein. (541 aa) | ||||
sks4 | Pectinesterase-like protein. (541 aa) | ||||
CDC48A | Cell division control protein 48 homolog A; Probably functions in cell division and growth processes. Interacts with certain SNAREs as part of specialized membrane fusion events where vesicles from the same organelle fuse (homotypic fusion) (By similarity). (809 aa) | ||||
DRP3B | Dynamin-related protein 3B; Involved in the control of mitochondrial and peroxisomal division and morphology. (780 aa) | ||||
Dl4805W | Dynamin. (294 aa) | ||||
SUB | Protein STRUBBELIG; Regulates the expression of transcription factors that define the cell fates. Acts in a non-cell-autonomous fashion, functions in a radial inside-out signaling process, and mediates cell morphogenesis and cell fate across clonally distinct cell layers in floral primordia, developing ovules, and root meristems. Seems to be required for the regulation of cell shape and the orientation of the mitotic division plane. Involved in root hair specification, in the formation of the outer integument and the shape of organs such as carpels and petals and is necessary for the s [...] (768 aa) | ||||
HSP70-4 | Heat shock 70 kDa protein 4; In cooperation with other chaperones, Hsp70s are key components that facilitate folding of de novo synthesized proteins, assist translocation of precursor proteins into organelles, and are responsible for degradation of damaged protein under stress conditions (Probable). ATP-dependent molecular chaperone that assists folding of unfolded or misfolded proteins under stress conditions. Mediates plastid precursor degradation to prevent cytosolic precursor accumulation, together with the E3 ubiquitin-protein ligase CHIP. Recognizes specific sequence motifs in tr [...] (650 aa) | ||||
Sks10 | Multi-copper oxidase type I family protein. (547 aa) |