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Ko, C. B.

Publications and source records attributed to Ko, C. B..

2 recordsLinked to original sources

Distinct NMDA Receptor Pools Determine Diverse Forms of Cortical Plasticity

NMDA receptors (NMDARs) are well-established as coincidence detectors in Hebbian learning, but this requires postsynaptic localization. Presynaptic NMDARs, however, remain controversial due to limitations of pharmacology and calcium imaging. We therefore dissected the function of distinct NMDAR pools using more direct techniques, including immunogold EM, sparse genetic deletion, and paired recordings from layer-5 (L5) pyramidal cell (PC) synapses in mouse primary visual cortex (V1). We found that pre- but not postsynaptic NMDARs regulate both spontaneous and evoked neurotransmitter release. In spike-timing-dependent plasticity, we uncovered a double dissociation: timing-dependent long-term depression (tLTD) requires pre- but not postsynaptic NMDARs, whereas timing-dependent long-term potentiation (tLTP) needs post- but not presynaptic NMDARs. Postsynaptic NMDAR loss also caused developmentally delayed dendritic spine loss and altered axonal and dendritic architecture. In summary, NMDARs do not act as a unified plasticity signal but rather confer location-specific control over diverse forms of synaptic signaling, plasticity, and circuit structure.

neuroscience↗

Genetic basis of state-dependent courtship sounds in inbred mice

Courtship behaviors consist of two phases, namely the appetitive and consummatory states. Despite the long history of the concept, few studies have been done regarding the genetic contribution on those two different phases. Male mice are known to produce distinct ultrasonic vocalizations (USVs) as they progress through courtship states1-14, and these courtship sounds also show strain-specific differences15-18. Here, we delved into USV syllable patterns emitted during specific courtship actions using inbred mouse strains and their progeny: C57BL/6J (B6) mice, 129S4/SvJae (129) mice, and their second filial generation (F2) offspring of mixed genetic backgrounds. B6, 129, and F2 mice generated similar USV syllables during mounting behavior. In contrast, B6 and 129 mice showed different USV syllable patterns during body and anogenital sniffing behavior, and the USV syllable usage of F2 mice in this courtship state diverged according to the degree of genetic similarity with B6 or 129 mice. From these results, we propose that differential selection pressures19-20 favored diversity in appetitive behavior but conservation in consummatory behaviors.

animal behavior and cognition↗