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Bae, J. W.

Publications and source records attributed to Bae, J. W..

2 recordsLinked to original sources

Skp1 proteins are structural components of the synaptonemal complex in C. elegans

The synaptonemal complex (SC) is a hallmark of meiotic prophase that plays a crucial role in regulating crossovers between homologous chromosomes. Here, we demonstrate that two Skp1-related proteins in C. elegans, SKR-1 and SKR-2, serve as structural components of the SC, independent of their canonical functions within the Skp1-Cul1-F-box (SCF) ubiquitin ligase complex. SKR-1 and SKR-2 localize to the central region of the SC, and synapsis requires their dimerization through a hydrophobic interface that overlaps with the binding sites for CUL-1 and F-box proteins. Using in vitro reconstitution and in vivo analysis of mutant proteins, we show that SKR proteins interact with the other SC proteins using their C-terminal helices to form a soluble complex, which likely represents a basic building block for SC assembly. Our findings demonstrate how conserved Skp1 proteins are repurposed as part of the SC and may provide insight into how synapsis is coupled to cell cycle progression.

cell biology↗

Parallel processing of working memory and temporal information by distinct types of cortical projection neurons

It is unclear how different types of cortical projection neurons work together to support diverse cortical functions. We examined the discharge characteristics and inactivation effects of intratelencephalic (IT) and pyramidal tract (PT) neurons--two major types of cortical excitatory neurons that project to cortical and subcortical structures, respectively--in the medial prefrontal cortex of mice performing a delayed response task. We found that IT neurons, but not PT neurons, convey significant working memory-related signals. We also found that the inactivation of IT neurons, but not PT neurons, impairs behavioral performance. In contrast, PT neurons convey far more temporal information than IT neurons during the delay period. Our results indicate a division of labor between IT and PT projection neurons in the prefrontal cortex for the maintenance of working memory and for tracking the passage of time, respectively.

neuroscience↗