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Mori, D.

Publications and source records attributed to Mori, D..

7 recordsLinked to original sources

Generative AI Guided Design of High-Affinity T cell Receptors

Developing T cell receptors (TCRs) with sufficiently high affinity for tumor antigens (TAs) remains a fundamental challenge in TCR-T immunotherapy. Experimental methods such as affinity maturation and high-throughput screening have enabled the identification of TCRs with enhanced activity. However, their efficiency is often constrained by limited throughput, insufficient coverage, and the generally lower affinities of naturally occurring TCRs toward TAs. To address these challenges, we present TCRPPO2, an integrated AI-driven, in silico affinity maturation framework for peptide-specific TCR optimization. Using reinforcement learning, TCRPPO2 learns mutation policies that iteratively enhance the TCR binding affinity to the target peptide, derived from predictive models trained on carefully curated interaction data. The model is further augmented by a generative AI critic model that discourages implausible designs to ensure the biophysical validity. The designs are further screened by robust post-screening methods that leverage diverse functional annotations and physical prior knowledge. We applied TCRPPO2 to the clinically relevant MART-1 antigen and experimentally validated the designed candidates in Jurkat cell-based functional assays. Among the five engineered TCRs, all of which demonstrated positive cellular responses, three showed significantly increased activities relative to their templates and one showed substantial enhancement. These functional gains were consistent with more favorable interaction energy from structural and physical modeling. Together, our results support a generalizable paradigm for TCR engineering, in which learned mutation policies can efficiently navigate the peptide-specific binding landscape of TCRs and propose biologically enhanced candidates without explicit structural supervision, offering a practical route for early-stage computational TCR optimization for challenging tumor antigens.

immunology↗

Dual resistance to cold and ethanol in Penicillium species persistently contaminating donated cadavers

Modern cadaver preservation techniques, such as low-concentration formaldehyde methods, are increasingly adopted to mitigate health risks and improve tissue fidelity for medical education and surgical training. However, these environments potentially foster fungal contamination. This study aimed to identify contaminating species from cadaveric surfaces stored under specific preservation conditions and establish effective countermeasures. Genetic identification revealed Penicillium paneum as the predominant species, while Penicillium corylophilum was also detected. These species exhibited distinctive traits, including vigorous growth at 4{degrees}C and marked ethanol tolerance, that explain their persistence in this preservation environment. Antifungal susceptibility testing demonstrated that these isolates were highly susceptible to commonly used disinfectants such as benzalkonium chloride, chlorhexidine gluconate, and phenol. Our findings indicate that these Penicillium species are uniquely adapted to low-temperature and ethanol-rich preservation environments. The incorporation of the identified disinfectants into preservation solutions offers a practical and effective strategy for controlling persistent fungal contamination in cadaveric facilities.

microbiology↗

Cortical excitatory and inhibitory neuron deficits may underlie the cognitive and social impairments in a mouse model of schizophrenia with exonic Reln deletion

Reelin is an essential extracellular matrix glycoprotein involved in the formation of cortical layers and has been associated with several neuropsychiatric conditions, such as schizophrenia (SCZ). To explore its role in brain function and its potential involvement in SCZ, we developed a Reln heterozygous deletion (Relndel/+) mouse model that mimics a genetic deletion observed in a Japanese patient with SCZ. In previous studies, we demonstrated that Relndel/+ mice exhibit cognitive impairments in a visual discrimination test. Here, we found that Relndel/+ mice displayed impairments in social novelty recognition, while social preference remained intact. Immunohistochemical analyses revealed a significant decrease in the numbers of calcium/calmodulin-dependent protein kinase II (CaMKII)-positive glutamatergic pyramidal neurons, gamma-aminobutyric acid (GABA)-ergic interneurons, and parvalbumin (PV)-positive interneurons in the medial prefrontal cortex (mPFC) of Relndel/+ mice. Furthermore, Relndel/+ mice exhibited significant deficits in excitatory spine density and morphology, as well as a decrease number of PV boutons in the mPFC compared to wild-type (WT) mice. Finally, we demonstrated that injection of AAV-R36-Myc virus into the mPFC can improve social novelty impairments in Relndel/+ mice, but no effects on WT control. These findings indicate that Relndel/+ mice could be a valuable model for exploring the neurobiological mechanisms underlying cognitive and social impairments in SCZ. Futhermore, our results with AAV-R36-Myc also suggest the therapeutic potential of Reelin replacement, warranting further investigation as a possible treatment strategy for SCZ. HighlightsO_LIReelin deficiency disrupts social novelty, but not social preference, in Relndel/+ mice C_LIO_LIRelndel/+ mice serve as a novel model to investigate impairments of neuronal mechanisms on schizophrenia C_LIO_LIAAV-R36-myc injection rescues social novelty deficits in Relndel/+ mice C_LIO_LIReelin replacement therapy is a potential treatment for schizophrenia C_LI Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=143 HEIGHT=200 SRC="FIGDIR/small/666057v1_ufig1.gif" ALT="Figure 1"> View larger version (34K): org.highwire.dtl.DTLVardef@1f4921aorg.highwire.dtl.DTLVardef@1a41b33org.highwire.dtl.DTLVardef@f5f2bcorg.highwire.dtl.DTLVardef@1134d8d_HPS_FORMAT_FIGEXP M_FIG C_FIG

animal behavior and cognition↗

Twinfilin-1 phosphorylation in reelin signaling regulates actin dynamics and spine development

Reelin is an extracellular glycoprotein essential for neuronal migration, spine development, and synaptic plasticity. Impaired reelin signaling is linked to neurological disorders, including schizophrenia and autism. While reelin mutant (reeler) mice exhibit behavioral deficits associated with impaired spine formation, the underlying molecular mechanisms remain unclear. We identified Twinfilin-1 (Twf1) as a downstream effector of reelin signaling via phosphoproteomic analysis, based on its reduced tyrosine phosphorylation in reeler mice. We found that Src regulated Twf1 phosphorylation at tyrosine 309, and reelin stimulation increased Twf1 phosphorylation in neurons, an effect blocked by the Src inhibitor PP2. A phospho-resistant Twf1 mutant (Twf1 Y309F) showed reduced capping protein binding and a lower F/G-actin ratio. Twf1Y309F mice exhibited cognitive deficits, reduced spine density, smaller spine head size, and a decreased F/G-actin ratio in synaptosomes. These findings highlight Twf1 phosphorylation as a key component of reelin signaling involved in actin remodeling and spine development.

neuroscience↗

Antipsychotic-like effects of the selective Rho-kinase 2 inhibitor KD025 in genetic and pharmacological mouse models of schizophrenia

1Copy number variations in the ARHGAP10 gene encoding Rho GTPase-activating protein 10 are significantly associated with schizophrenia. ARHGAP10 negatively regulates RhoA/Rho-kinase (ROCK) signaling. We previously demonstrated that fasudil, a non-selective ROCK inhibitor, exhibited antipsychotic-like effects in several mouse models of schizophrenia. ROCK has two subtypes, ROCK1 and ROCK2. ROCK1 is mainly expressed in the thymus and blood, while ROCK2 is predominantly expressed in the brain. Therefore, it is expected that like fasudil, selective ROCK2 inhibitors will exhibit antipsychotic-like effects, accompanied by a lower incidence of adverse effects due to ROCK1 inhibition. Here, we used genetic and pharmacological models of schizophrenia to investigate whether the selective ROCK2 inhibitor KD025 would show antipsychotic-like effects with a favorable adverse effect profile. Oral administration of KD025 suppressed the abnormal increase in the phosphorylation level of myosin phosphatase-targeting subunit 1, a substrate of ROCK, and ameliorated the decreased spine density of layer 2/3 pyramidal neurons in the medial prefrontal cortex of Arhgap10 S490P/NHEJ mice. Furthermore, KD025 mitigated the methamphetamine-induced impairment of visual discrimination (VD) in Arhgap10 S490P/NHEJ and wild-type mice. KD025 also reduced MK-801-induced impairments of VD, novel object recognition, and hyperlocomotion. Regarding side effects that are commonly seen with typical antipsychotics, KD025 did not affect systolic blood pressure and did not induce extrapyramidal symptoms, hyperprolactinemia, or hyperglycemia at the effective dosage in naive wild-type mice. Taken together, KD025 shows antipsychotic-like effects with a favorable adverse effect profile in genetic and pharmacological mouse models of schizophrenia.

pharmacology and toxicology↗

Antifungal potency of terbinafine as a therapeutic agent against Exophiala dermatitidis in vitro

SynopsisO_ST_ABSBackgroundC_ST_ABSExophiala dermatitidis (E. dermatitidis), which causes skin infections or respiratory diseases, is occasionally fatal in immunocompromised patients. ObjectivesHere, we report the unique antifungal potency of terbinafine (TRB), which targets squalene epoxidase, against E. dermatitidis (SQLEED) using various in vitro approaches. MethodsBased on the human SQLE crystal structure, we created a structure model of SQLEED using SWISS-MODEL and determined the best-fitting model of TRB to the SQLEED. The versatile antifungal activities, including fungicidal activity, biofilm inhibition, biofilm eradication activity, and the combination effect of TRB, posaconazole (PSC), and amphotericin B (AmB) with great antifungal potency against E. dermatitidis were evaluated using crystal violet and cell viability assay. ResultsClinically isolated E. dermatitidis increased most vigorously at 30{degrees}C but decreased at 40{degrees}C. E. dermatitidis hyphae elongated and attached to a cell scaffold, forming a membrane-like biofilm that was distinct from the cell-free biofilm. In the binding model, TRB formed an H-bond with Y102 and was surrounded by key amino acid residues of SQLEED corresponding to TRB-resistant mutations in Trichophyton rubrum, showing an appropriate interaction. Among TRB, PSC, and AmB with potent antifungal activities, TRB and PSC showed more potent antibiofilm activities than AmB. In addition, TRB and PSC exhibited residual potency without incubation against E. dermatitidis, decreasing the growth at lower concentrations than AmB. In contrast, AmB exhibited strong time-dependent killing and eradication activities. The combination of TRB and PSC was more effective than that of TRB and AmB or PSC and AmB in vitro. ConclusionsAlthough the tissue migration of TRB must be considered, these data suggest that TRB and PSC may be useful agents and a potent combination in severely immunocompromised patients with refractory and systemic E. dermatitidis infection.

microbiology↗

Human Dectin-1 is O-glycosylated and serves as a ligand for C-type lectin receptor CLEC-2

C-type lectin receptors (CLRs) elicit immune responses upon recognition of glycoconjugates present on pathogens and self-components. While Dectin-1 is the best-characterized CLR recognizing {beta}-glucan on pathogens, the endogenous targets of Dectin-1 are not fully understood. Herein, we report that human Dectin-1 is a ligand for CLEC-2, another CLR expressed on platelets. Biochemical analyses revealed that Dectin-1 is a mucin-like protein as its stalk region is highly O-glycosylated. A sialylated core 1 glycan attached to the EDxxT motif of human Dectin-1, which is absent in mouse Dectin-1, provides a ligand moiety for CLEC-2. Strikingly, the expression of human Dectin-1 in mice rescued the lethality and lymphatic defect resulting from a deficiency of Podoplanin, a known CLEC-2 ligand. This finding is the first example of an innate immune receptor also functioning as a physiological ligand to regulate ontogeny upon glycosylation.

immunology↗