Publications by authors named "Lijin Dong"

Photoreceptor cells express the patatin-like phospholipase domain-containing 2 (PNPLA2) gene that codes for pigment epithelium-derived factor receptor (PEDF-R). PEDF-R exhibits phospholipase activity that mediates the neurotrophic action of its ligand PEDF. Because phospholipids are the most abundant lipid class in the retina, we investigated the role of PNPLA2 in photoreceptors by generating CRISPR Pnpla2 knockout mouse lines.

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Genome-wide association studies have uncovered mostly non-coding variants at over 60 genetic loci linked to susceptibility for age-related macular degeneration (AMD). To ascertain the causal gene at the PILRB/PILRA locus, we used a CRISPR strategy to produce germline deletions in the mouse paired immunoglobin-like type 2 receptor (Pilr) genes that encode highly related activating (PILRB) and inhibitory (PILRA) receptors. We show that a combined loss of Pilrb1 and Pilrb2, but not Pilra, leads to an early but relatively stationary defect as the electroretinography (ERG) amplitudes of Pilrb1/2-/- mice exhibit a marked reduction as early as postnatal day 15 and do not show additional significant decrease at 3 and 12-months.

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  • Decreased activity of the SLC26A4 protein, critical for ear fluid balance, is linked to hearing loss.
  • Researchers found that the μ2 subunit of the AP-2 complex plays a key role in controlling SLC26A4's presence at the cell membrane where it helps reabsorb endolymph in the inner ear.
  • By blocking clathrin-mediated endocytosis, they showed that more SLC26A4 accumulates on cell surfaces, suggesting that the SLC26A4-μ2 interaction directly influences how much SLC26A4 is available where it’s needed.
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  • Alcohol is the most widely consumed and abused psychoactive drug, yet the brain mechanisms behind its effects are not fully understood.
  • Researchers identified a protein called TMEM132B, which acts as an auxiliary subunit for GABA receptors, influencing their functioning and how alcohol impacts them.
  • In experiments with mice lacking TMEM132B, researchers found decreased GABA transmission and heightened compulsive alcohol consumption, suggesting TMEM132B-GABA interactions are important for understanding alcohol’s effects and related behaviors.
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  • * Researchers found that chronic stress activates a molecular pathway involving Src kinase and calmodulin, which disrupts the MyoVa and NL2 interaction, leading to increased anxiety-like behaviors.
  • * By inhibiting Src, they were able to restore inhibitory synaptic function and reduce anxiety symptoms in stressed mice, suggesting a promising therapeutic target for treating these disorders.
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  • * A systematic review identified 36 new pathogenic and 10 likely pathogenic variants through measuring esterase activity, creating a reliable method for classifying variants related to PNPLA6.
  • * The study revealed a significant link between NTE activity levels and the presence of specific symptoms like retinopathy and endocrinopathy, supporting the idea that PNPLA6 disorders are a spectrum of related phenotypes based on NTE genotype and activity, setting the stage for future therapies.
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  • Treatments for neurodegenerative diseases like Frontotemporal dementia (FTD) and Amyotrophic lateral sclerosis (ALS) are limited, highlighting the need for better understanding and relevant disease models.
  • Researchers have created a new CRISPR interference (CRISPRi) knockin mouse model to expedite the investigation of genetic factors linked to FTD and ALS, allowing targeted gene expression suppression.
  • Validation using the stathmin-2 (STMN2) protein indicates that its depletion is linked to familial FTD, and while it didn’t affect dipeptide repeat proteins, it reduced phosphorylated TDP-43 inclusions, showcasing the model’s potential for further neurodegenerative disease research.
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Information processing and storage in the brain rely on AMPA-receptors (AMPARs) and their context-dependent dynamics in synapses and extra-synaptic sites. We found that distribution and dynamics of AMPARs in the plasma membrane are controlled by Noelins, a three-member family of conserved secreted proteins expressed throughout the brain in a cell-type-specific manner. Noelin tetramers tightly assemble with the extracellular domains of AMPARs and interconnect them in a network-like configuration with a variety of secreted and membrane-anchored proteins including Neurexin1, Neuritin1, and Seizure 6-like.

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  • Biallelic pathogenic variants in the NTE gene are linked to various disorders that cause issues like gait disturbance, visual impairment, and hormonal problems such as anterior hypopituitarism.
  • A clinical meta-analysis of new and previously reported patients identifies specific missense variants as significant contributors to disease pathogenesis, with a developed functional assay helping to classify variants of unknown significance.
  • Findings show a clear connection between reduced NTE activity and the occurrence of certain conditions (retinopathy and endocrinopathy), suggesting a continuous spectrum of disorders based on NTE functionality, which may guide future therapeutic strategies.
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Photoreceptor cells express the patatin-like phospholipase domain-containing 2 (PNPLA2) gene that codes for pigment epithelium-derived factor receptor (PEDF-R) (also known as ATGL). PEDF-R exhibits phospholipase activity that mediates the neurotrophic action of its ligand PEDF. Because phospholipids are the most abundant lipid class in the retina, we investigated the role of PEDF-R in photoreceptors by generating CRISPR Pnpla2 knock-out mouse lines in a retinal degeneration-free background.

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Overgrowth syndromes can be caused by pathogenic genetic variants in epigenetic writers, such as DNA and histone methyltransferases. However, no overgrowth disorder has previously been ascribed to variants in a gene that acts primarily as an epigenetic reader. Here, we studied a male individual with generalized overgrowth of prenatal onset.

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Bietti crystalline corneo-retinal dystrophy (BCD) is an autosomal recessive inherited retinal dystrophy characterized by multiple shimmering yellow-white deposits in the posterior pole of the retina in association with atrophy of the retinal pigment epithelium (RPE), pigment clumps, and choroidal atrophy and sclerosis. Blindness and severe visual damage are common in late-stage BCD patients. We generated a knockout mouse model to investigate the pathogenesis of BCD.

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Purpose: Uveal coloboma is a congenital eye malformation caused by failure of the optic fissure to close in early human development. Despite significant progress in identifying genes whose regulation is important for executing this closure, mutations are detected in a minority of cases using known gene panels, implying additional genetic complexity. We have previously shown knockdown of znf503 (the ortholog of mouse Zfp503) in zebrafish causes coloboma.

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Purpose: Loss of retinoschisin (RS1) function underlies X-linked retinoschisis (XLRS) pathology. In the retina, both photoreceptor inner segments and bipolar cells express RS1. However, the loss of RS1 function causes schisis primarily in the inner retina.

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Interleukin-27 is constitutively secreted by microglia in the retina or brain, and upregulation of IL-27 during neuroinflammation suppresses encephalomyelitis and autoimmune uveitis. However, while IL-35 is structurally and functionally similar to IL-27, the intrinsic roles of IL-35 in CNS tissues are unknown. Thus, we generated IL-35/YFP-knock-in reporter mice (p35-KI) and demonstrated that photoreceptor neurons constitutively secrete IL-35, which might protect the retina from persistent low-grade inflammation that can impair photoreceptor functions.

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GABA-A receptors (GABARs) are crucial for development and function of the brain. Altered GABAergic transmission is hypothesized to be involved in neurodevelopmental disorders. Recently, we identified Shisa7 as a GABAR auxiliary subunit that modulates GABAR trafficking and GABAergic transmission.

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Background: Functional complexity of the eukaryotic mitochondrial proteome is augmented by independent gene acquisition from bacteria since its endosymbiotic origins. Mammalian homologs of many ancestral mitochondrial proteins have uncharacterized catalytic activities. Recent forward genetic approaches attributed functions to proteins in established metabolic pathways, thereby limiting the possibility of identifying novel biology relevant to human disease.

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SP7/Osterix is a transcription factor critical for osteoblast maturation and bone formation. Homozygous loss-of-function mutations in SP7 cause osteogenesis imperfecta type XII, but neomorphic (gain-of-new-function) mutations of SP7 have not been reported in humans. Here we describe a de novo dominant neomorphic missense variant (c.

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We constructed and characterized knockout and conditional knockout mice for KCNJ13, encoding the inwardly rectifying K channel of the Kir superfamily Kir7.1, mutations in which cause both Snowflake Vitreoretinal Degeneration (SVD) and Retinitis pigmentosa (RP) to further elucidate the pathology of this disease and to develop a potential model system for gene therapy trials. A Kcnj13 knockout mouse line was constructed by inserting a gene trap cassette expressing beta-galactosidase flanked by FRT sites in intron 1 with LoxP sites flanking exon two and converted to a conditional knockout by FLP recombination followed by crossing with C57BL/6J mice having Cre driven by the VMD2 promoter.

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Regulatory B cells (Breg cells) that secrete IL-10 or IL-35 (i35-Breg) play key roles in regulating immunity in tumor microenvironment or during autoimmune and infectious diseases. Thus, loss of Breg function is implicated in development of autoimmune diseases while aberrant elevation of Breg prevents sterilizing immunity, exacerbates infectious diseases, and promotes cancer metastasis. Breg cells identified thus far are largely antigen-specific and derive mainly from B2-lymphocyte lineage.

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Mutations in the gene for Retinitis Pigmentosa GTPase Regulator (RPGR) cause the X-linked form of inherited retinal degeneration, and the majority are frameshift mutations in a highly repetitive, purine-rich region of RPGR known as the OFR15 exon. Truncation of the reading frame in this terminal exon ablates the functionally important C-terminal domain. We hypothesized that targeted excision in ORF15 by CRISPR/Cas9 and the ensuing repair by non-homologous end joining could restore RPGR reading frame in a portion of mutant photoreceptors thereby correcting gene function in vivo.

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Vision requires the transport and recycling of the pigment 11-cis retinaldehyde (retinal) between the retinal pigment epithelium (RPE) and photoreceptors. 11-cis retinal is also required for light-mediated photoreceptor death in dark-adapted mouse eye, probably through overstimulation of rod cells adapted for low light. Retbindin is a photoreceptor-specific protein, of unclear function, that is localized between the RPE and the tips of the photoreceptors.

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Background: With the increasing incidence of papillary thyroid carcinoma (PTC), PTC continues to garner attention worldwide; however its pathogenesis remains to be elucidated. The purpose of this study was to explore key biomarkers and potential new therapeutic targets for, PTC.

Methods: GEO2R and Venn online software were used for screening of differentially expressed genes.

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Article Synopsis
  • - Members of the POU4F/Brn3 transcription factor family are crucial for the development of retinal ganglion cells (RGCs), which transmit visual information from the eye to the brain; previous research identified three types of Brn3c RGCs.
  • - This study introduces a new Brn3c mouse allele and investigates how Brn3c overlaps with Brn3a and Brn3b, as well as the dendritic structures and responses of Brn3c RGCs to visual stimuli.
  • - The findings indicate a greater variety and number of Brn3c RGC types than previously recognized, reveal connections to specific brain nuclei, and contribute to an improved understanding of RGC classification and
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Human pathogenic variants of are associated with clinically heterogeneous phenotypes, including recessive nonsyndromic deafness DFNB86, dominant nonsyndromic deafness DFNA65, seizure accompanied by deafness, a variety of isolated seizure phenotypes and DOORS syndrome, characterized by deafness, onychodystrophy, osteodystrophy, intellectual disability and seizures. Thirty-five pathogenic variants of human associated with deafness have been reported. However, functions of TBC1D24 in the inner ear and the pathophysiology of TBC1D24-related deafness are unknown.

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