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Biology subjects

Hwang, S.-k.

Publications and source records attributed to Hwang, S.-k..

2 recordsLinked to original sources

Identification of a sequence motif of the rice Pho1 L80 that potentially modulates grain starch metabolism and floral timing

Plastidial phosphorylase (Pho1) regulates starch metabolism and also modulates photosystem I (PSI) activity. In rice, Pho1 contains an 80 amino acid intrinsically disordered region (IDR), L80, that acts as a negative regulator. While total removal of the IDR boosts seedling growth, flowering time, overall biomass, and grain yield and alters PSI redox properties, the precise underlying regulatory basis remains unclear. To pinpoint IDR regulatory elements, four Pho1 partial-IDR deletion variants ({delta}N, {delta}C, {delta}M, and {delta}N{delta}C) were evaluated. Lines carrying {delta}M and {delta}C exhibited enhanced starch metabolism, yielding larger, heavier grains, and flowered 5 to10 days earlier than wild type. Both d{delta}M and {delta}C share an acidic motif, (E/V)SEEV, identifying it as a primary negative regulator of starch synthesis and floral timing. By contrast, no partial deletion fully mirrored the PSI redox modifications of Pho1{delta}L80. These results demonstrate that starch biosynthesis and flowering are governed by one or more discrete sequence motifs within the middle and C-terminal regions, whereas PSI modulation likely requires the structural integrity of the intact IDR.

plant biology↗

The secreted midbody remnants, MBsomes, as a new class of mRNA nanocarrier applicable to diverse medical fields

The midbodysome (MBsome), a secreted remnant of midbody during cell division, is now known to play a key role in cytokinesis. It was thought that the MBsome is either released into the extracellular space or autophagically degraded by one of its daughter cells. However, recent studies have revealed that MBsomes can be maintained by cells even after cell division is complete, and that they accumulate in the cytoplasm and regulate cell proliferation and survival through integrin and epidermal growth factor receptor-dependent pathways. Here, we examined the ability of MBsomes to act as carriers of mRNAs, a novel function that has not been studied. We found that MBsomes isolated from human lung cancer and stem cells via sucrose cushion ultracentrifugation were 300-400 nm in size and stable for up to 4 days when stored at 4{degrees}C. In addition, we confirmed successful expression of the EGFP protein following incubation of the isolated MBsomes with the EGFP mRNA at room temperature. These results suggest that MBsomes have the potential to serve as mRNA carriers and therapeutic agents capable of delivering a gene-of-interest.

cell biology↗