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1.
Int J Mol Sci ; 25(9)2024 Apr 24.
Article in English | MEDLINE | ID: mdl-38731861

ABSTRACT

The expression of polysialic acid (polySia) on the neuronal cell adhesion molecule (NCAM) is called NCAM-polysialylation, which is strongly related to the migration and invasion of tumor cells and aggressive clinical status. Thus, it is important to select a proper drug to block tumor cell migration during clinical treatment. In this study, we proposed that lactoferrin (LFcinB11) may be a better candidate for inhibiting NCAM polysialylation when compared with CMP and low-molecular-weight heparin (LMWH), which were determined based on our NMR studies. Furthermore, neutrophil extracellular traps (NETs) represent the most dramatic stage in the cell death process, and the release of NETs is related to the pathogenesis of autoimmune and inflammatory disorders, with proposed involvement in glomerulonephritis, chronic lung disease, sepsis, and vascular disorders. In this study, the molecular mechanisms involved in the inhibition of NET release using LFcinB11 as an inhibitor were also determined. Based on these results, LFcinB11 is proposed as being a bifunctional inhibitor for inhibiting both NCAM polysialylation and the release of NETs.


Subject(s)
Extracellular Traps , Lactoferrin , Neural Cell Adhesion Molecules , Sialic Acids , Lactoferrin/pharmacology , Lactoferrin/metabolism , Humans , Extracellular Traps/metabolism , Extracellular Traps/drug effects , Neural Cell Adhesion Molecules/metabolism , Sialic Acids/metabolism , Neutrophils/metabolism , Neutrophils/drug effects , Heparin, Low-Molecular-Weight/pharmacology
2.
Sci Rep ; 14(1): 10187, 2024 05 03.
Article in English | MEDLINE | ID: mdl-38702381

ABSTRACT

Neurexins (Nrxns) are critical for synapse organization and their mutations have been documented in autism spectrum disorder, schizophrenia, and epilepsy. We recently reported that conditional deletion of Nrxn2, under the control of Emx1Cre promoter, predominately expressed in the neocortex and hippocampus (Emx1-Nrxn2 cKO mice) induced stereotyped patterns of behavior in mice, suggesting behavioral inflexibility. In this study, we investigated the effects of Nrxn2 deletion through two different conditional approaches targeting presynaptic cortical neurons projecting to dorsomedial striatum on the flexibility between goal-directed and habitual actions in response to devaluation of action-outcome (A-O) contingencies in an instrumental learning paradigm or upon reversal of A-O contingencies in a water T-maze paradigm. Nrxn2 deletion through both the conditional approaches induced an inability of mice to discriminate between goal-directed and habitual action strategies in their response to devaluation of A-O contingency. Emx1-Nrxn2 cKO mice exhibited reversal learning deficits, indicating their inability to adopt new action strategies. Overall, our studies showed that Nrxn2 deletion through two distinct conditional deletion approaches impaired flexibility in response to alterations in A-O contingencies. These investigations can lay the foundation for identification of novel genetic factors underlying behavioral inflexibility.


Subject(s)
Behavior, Animal , Mice, Knockout , Nerve Tissue Proteins , Transcription Factors , Animals , Mice , Nerve Tissue Proteins/genetics , Male , Neural Cell Adhesion Molecules/genetics , Gene Deletion , Maze Learning/physiology , Reversal Learning/physiology , Homeodomain Proteins/genetics , Hippocampus/metabolism , Cell Adhesion Molecules, Neuronal/genetics , Conditioning, Operant
3.
Elife ; 132024 Mar 07.
Article in English | MEDLINE | ID: mdl-38450720

ABSTRACT

Synapse is the fundamental structure for neurons to transmit information between cells. The proper synapse formation is crucial for developing neural circuits and cognitive functions of the brain. The aberrant synapse formation has been proved to cause many neurological disorders, including autism spectrum disorders and intellectual disability. Synaptic cell adhesion molecules (CAMs) are thought to play a major role in achieving mechanistic cell-cell recognition and initiating synapse formation via trans-synaptic interactions. Due to the diversity of synapses in different brain areas, circuits and neurons, although many synaptic CAMs, such as Neurexins (NRXNs), Neuroligins (NLGNs), Synaptic cell adhesion molecules (SynCAMs), Leucine-rich-repeat transmembrane neuronal proteins (LRRTMs), and SLIT and NTRK-like protein (SLITRKs) have been identified as synaptogenic molecules, how these molecules determine specific synapse formation and whether other molecules driving synapse formation remain undiscovered are unclear. Here, to provide a tool for synapse labeling and synaptic CAMs screening by artificial synapse formation (ASF) assay, we generated synaptotagmin-1-tdTomato (Syt1-tdTomato) transgenic mice by inserting the tdTomato-fused synaptotagmin-1 coding sequence into the genome of C57BL/6J mice. In the brain of Syt1-tdTomato transgenic mice, the tdTomato-fused synaptotagmin-1 (SYT1-tdTomato) signals were widely observed in different areas and overlapped with synapsin-1, a widely-used synaptic marker. In the olfactory bulb, the SYT1-tdTomato signals are highly enriched in the glomerulus. In the cultured hippocampal neurons, the SYT1-tdTomato signals showed colocalization with several synaptic markers. Compared to the wild-type (WT) mouse neurons, cultured hippocampal neurons from Syt1-tdTomato transgenic mice presented normal synaptic neurotransmission. In ASF assays, neurons from Syt1-tdTomato transgenic mice could form synaptic connections with HEK293T cells expressing NLGN2, LRRTM2, and SLITRK2 without immunostaining. Therefore, our work suggested that the Syt1-tdTomato transgenic mice with the ability to label synapses by tdTomato, and it will be a convenient tool for screening synaptogenic molecules.


Subject(s)
Cell Adhesion Molecules , Red Fluorescent Protein , Synapses , Humans , Mice , Animals , Mice, Transgenic , HEK293 Cells , Mice, Inbred C57BL , Cell Adhesion Molecules/metabolism , Synapses/physiology , Synaptotagmins/metabolism , Neural Cell Adhesion Molecules/metabolism
4.
Mol Biol Cell ; 35(5): ar64, 2024 May 01.
Article in English | MEDLINE | ID: mdl-38507235

ABSTRACT

Natural killer (NK) cells patrol tissue to mediate lysis of virally infected and tumorigenic cells. Human NK cells are typically identified by their expression of neural cell adhesion molecule (NCAM, CD56), yet despite its ubiquitous expression on NK cells, CD56 remains a poorly understood protein on immune cells. CD56 has been previously demonstrated to play roles in NK cell cytotoxic function and cell migration. Specifically, CD56-deficient NK cells have impaired cell migration on stromal cells and CD56 is localized to the uropod of NK cells migrating on stroma. Here, we show that CD56 is required for NK cell migration on ICAM-1 and is required for the establishment of persistent cell polarity and unidirectional actin flow. The intracellular domain of CD56 (NCAM-140) is required for its function and the loss of CD56 leads to enlarged actin foci and sequestration of phosphorylated Pyk2 accompanied by increased size and frequency of activated LFA-1 clusters. Together, these data identify a role for CD56 in regulating human NK cell migration through modulation of actin dynamics and integrin turnover.


Subject(s)
Actins , Neural Cell Adhesion Molecules , Humans , Neural Cell Adhesion Molecules/metabolism , Actins/metabolism , CD56 Antigen/metabolism , Killer Cells, Natural , Lymphocyte Function-Associated Antigen-1/metabolism , Cell Movement
5.
J Endocrinol Invest ; 47(5): 1215-1226, 2024 May.
Article in English | MEDLINE | ID: mdl-38485895

ABSTRACT

PURPOSE: Papillary Thyroid Carcinoma (PTC) is the most prevalent subtype of Thyroid Carcinoma (THCA), a type of malignancy in the endocrine system. According to prior studies, Neural Cell Adhesion Molecule (NRCAM) has been found to be up-regulated in PTC and stimulates the proliferation and migration of PTC cells. However, the specific mechanism of NRCAM in PTC cells is not yet fully understood. Consequently, this study aimed to investigate the underlying mechanism of NRCAM in PTC cells, the findings of which could provide new insights for the development of potential treatment targets for PTC. METHODS AND RESULTS: Bioinformatics tools were utilized and a series of experiments were conducted, including Western blot, colony formation, and dual-luciferase reporter assays. The data collected indicated that NRCAM was overexpressed in THCA tissues and PTC cells. Circular RNA NRCAM (circNRCAM) was found to be highly expressed in PTC cells and to positively regulate NRCAM expression. Through loss-of-function assays, both circNRCAM and NRCAM were shown to promote the proliferation, invasion, and migration of PTC cells. Mechanistically, this study confirmed that precursor microRNA-506 (pre-miR-506) could bind with m6A demethylase AlkB Homolog 5 (ALKBH5), leading to its m6A demethylation. It was also discovered that circNRCAM could competitively bind to ALKBH5, which restrained miR-506-3p expression and promoted NRCAM expression. CONCLUSION: In summary, circNRCAM could up-regulate NRCAM by down-regulating miR-506-3p, thereby enhancing the biological behaviors of PTC cells.


Subject(s)
Cell Movement , Cell Proliferation , Disease Progression , RNA, Circular , Thyroid Cancer, Papillary , Thyroid Neoplasms , Up-Regulation , Humans , Biomarkers, Tumor/metabolism , Biomarkers, Tumor/genetics , Gene Expression Regulation, Neoplastic , MicroRNAs/genetics , MicroRNAs/metabolism , Neural Cell Adhesion Molecules/metabolism , Neural Cell Adhesion Molecules/genetics , RNA, Circular/genetics , RNA, Circular/metabolism , Thyroid Cancer, Papillary/metabolism , Thyroid Cancer, Papillary/pathology , Thyroid Cancer, Papillary/genetics , Thyroid Neoplasms/pathology , Thyroid Neoplasms/metabolism , Thyroid Neoplasms/genetics
6.
Gen Physiol Biophys ; 43(1): 73-84, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38312036

ABSTRACT

This study investigated whether microbubbles activated by low-frequency ultrasound enhanced the anti-tumor effects of curcumin in glioma cells. CCK8 proliferation assay, scratch migration assay, and transwell invasion assay were performed to estimate the proliferation, migration, and invasion rates of the glioma cells in blank control and different treatment groups, respectively. Quantitative RT-PCR (qRT-PCR) analysis was performed to determine the relative expression levels of VEGF and NCAM mRNAs in the various experimental groups. Western blotting was performed to determine the activity status of the TGF-ß1/Smad signaling pathway in various groups of glioma cells by estimating the expression levels of p-SMAD2/3, VEGF, and NCAM proteins. Combined treatment (Cur-Us-MBs) with microbubbles activated by low-frequency ultrasound and curcumin significantly reduced the in vitro proliferation, migration, and invasiveness of glioma cells compared to the control and other treatment groups. Furthermore, Cur-Us-MBs significantly reduced the expression levels of VEGF and NCAM mRNAs and proteins and p-Smad2/3 proteins , including those cells stimulated with rhTGF-ß. These suggested that microbubbles activated by low-frequency ultrasound enhanced the inhibition of TGF-ß1/Smad/VEGF/NCAM signaling pathway by curcumin,and enhanced the antitumor effects of curcumin by significantly reducing in vitro proliferation, migration, and invasiveness of glioma cells through this pathway.


Subject(s)
Curcumin , Glioma , Humans , Cell Line, Tumor , Cell Movement , Cell Proliferation , Curcumin/pharmacology , Glioma/drug therapy , Microbubbles , Neural Cell Adhesion Molecules/metabolism , Signal Transduction , Transforming Growth Factor beta1/metabolism , Vascular Endothelial Growth Factor A/metabolism , Smad Proteins/metabolism
7.
J Chem Neuroanat ; 136: 102391, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38219812

ABSTRACT

BACKGROUND: Maternal diabetes during pregnancy can affect the neurological development of offspring. Glial cell-derived neurotrophic factor (GDNF), neurturin (NRTN), and neural cell adhesion molecules (NCAM) are three important proteins for brain development. Therefore, this study aimed to investigate the impacts of the mentioned neurotrophic factors in the hippocampal dentate gyrus (DG) of rat offspring born to diabetic mothers. METHODS: Wistar female rats were randomly allocated into diabetic (STZ-D) [(45 mg/kg BW, STZ (Streptozotocin), i.p)], diabetic + NPH insulin (STZ-INS) [(4-6 unit/kg/day SC)], and control groups. The animals in all groups were mated by non-diabetic male rats. Two weeks after birth, male pups from each group were sacrificed and then protein contents of GDNF, NRTN, and NCAM were evaluated using immunohistochemistry. RESULTS: The study found that the expression of GDNF and NRTN in the hippocampus of diabetic rat offspring was significantly higher compared to the diabetic+ insulin and control groups, respectively (P < 0.01, P < 0.001). Additionally, the expression of NCAM was significantly higher in the diabetic group the diabetic+ insulin and control groups (P < 0.01, P < 0.001). CONCLUSIONS: The results of the study revealed that diabetes during pregnancy significantly impacts the distribution pattern of GDNF, NRTN, and NCAM in the hippocampus of rat neonates.


Subject(s)
Diabetes, Gestational , Insulins , Humans , Pregnancy , Rats , Animals , Male , Female , Glial Cell Line-Derived Neurotrophic Factor/metabolism , Neurturin/metabolism , Neurturin/pharmacology , Rats, Wistar , Neural Cell Adhesion Molecules/metabolism , Dentate Gyrus/metabolism
8.
Cell Commun Signal ; 22(1): 85, 2024 01 30.
Article in English | MEDLINE | ID: mdl-38291468

ABSTRACT

K-Ras is the most frequently mutated Ras variant in pancreatic, colon and non-small cell lung adenocarcinoma. Activating mutations in K-Ras result in increased amounts of active Ras-GTP and subsequently a hyperactivation of effector proteins and downstream signaling pathways. Here, we demonstrate that oncogenic K-Ras(V12) regulates tumor cell migration by activating the phosphatidylinositol 3-kinases (PI3-K)/Akt pathway and induces the expression of E-cadherin and neural cell adhesion molecule (NCAM) by upregulation of Akt3. In vitro interaction and co-precipitation assays identified PI3-Kα as a bona fide effector of active K-Ras4B but not of H-Ras or N-Ras, resulting in enhanced Akt phosphorylation. Moreover, K-Ras(V12)-induced PI3-K/Akt activation enhanced migration in all analyzed cell lines. Interestingly, Western blot analyses with Akt isoform-specific antibodies as well as qPCR studies revealed, that the amount and the activity of Akt3 was markedly increased whereas the amount of Akt1 and Akt2 was downregulated in EGFP-K-Ras(V12)-expressing cell clones. To investigate the functional role of each Akt isoform and a possible crosstalk of the isoforms in more detail, each isoform was stably depleted in PANC-1 pancreatic and H23 lung carcinoma cells. Akt3, the least expressed Akt isoform in most cell lines, is especially upregulated and active in Akt2-depleted cells. Since expression of EGFP-K-Ras(V12) reduced E-cadherin-mediated cell-cell adhesion by induction of polysialylated NCAM, Akt3 was analyzed as regulator of E-cadherin and NCAM. Western blot analyses revealed pronounced reduction of E-cadherin and NCAM in the Akt3-kd cells, whereas Akt1 and Akt2 depletion upregulated E-cadherin, especially in H23 lung carcinoma cells. In summary, we identified oncogenic K-Ras4B as a key regulator of PI3-Kα-Akt signaling and Akt3 as a crucial regulator of K-Ras4B-induced modulation of E-cadherin and NCAM expression and localization.


Subject(s)
Adenocarcinoma , Lung Neoplasms , Pancreatic Neoplasms , Humans , Proto-Oncogene Proteins c-akt/metabolism , Neural Cell Adhesion Molecules , Cadherins , Lung Neoplasms/genetics , Protein Isoforms , Phosphatidylinositol 3-Kinases/metabolism , Lung/metabolism , Pancreatic Neoplasms/pathology
9.
Transl Psychiatry ; 14(1): 31, 2024 Jan 18.
Article in English | MEDLINE | ID: mdl-38238328

ABSTRACT

Cognitive decline is a major health concern and identification of genes that may serve as drug targets to slow decline is important to adequately support an aging population. Whilst genetic studies of cross-sectional cognition have been carried out, cognitive change is less well-understood. Here, using data from the TOMMORROW trial, we investigate genetic associations with cognitive change in a cognitively normal older cohort. We conducted a genome-wide association study of trajectories of repeated cognitive measures (using generalised estimating equation (GEE) modelling) and tested associations with polygenic risk scores (PRS) of potential risk factors. We identified two genetic variants associated with change in attention domain scores, rs534221751 (p = 1 × 10-8 with slope 1) and rs34743896 (p = 5 × 10-10 with slope 2), implicating NCAM2 and CRIPT/ATP6V1E2 genes, respectively. We also found evidence for the association between an education PRS and baseline cognition (at >65 years of age), particularly in the language domain. We demonstrate the feasibility of conducting GWAS of cognitive change using GEE modelling and our results suggest that there may be novel genetic associations for cognitive change that have not previously been associated with cross-sectional cognition. We also show the importance of the education PRS on cognition much later in life. These findings warrant further investigation and demonstrate the potential value of using trial data and trajectory modelling to identify genetic variants associated with cognitive change.


Subject(s)
Cognition Disorders , Cognitive Dysfunction , Humans , Aged , Genome-Wide Association Study , Cross-Sectional Studies , Cognition , Cognitive Dysfunction/genetics , Cognitive Dysfunction/psychology , Neural Cell Adhesion Molecules/genetics , Adaptor Proteins, Signal Transducing/genetics
10.
Mol Biotechnol ; 66(1): 90-101, 2024 Jan.
Article in English | MEDLINE | ID: mdl-37031335

ABSTRACT

In the fight against glioblastoma, circular RNA is emerging as a functional molecule. However, how circular RNA (circRNA) is regulated and what role it plays is still a mystery. In this research, different bioinformatics approaches were used to evaluate glioblastoma circRNA sequencing and array data, with the goal of developing a putative molecular sponge mechanism control network. The circRNAs were obtained from the Gene Expression Omnibus datasets. MicroRNA-circRNA interactions were predicted using CircInteractome. The microRNAs' expression and survival trends were screened using the TCGA database. MicroRNA gene targets were predicted using the MiRnet database. Sponge network gene candidates were screened using data from the GEPIA. The roles of the targeted genes were to be explained by analyzing data from Gene Ontology and the Kyoto Encyclopedia of Genes and Genomes. To build the network and display the outcomes, we utilized python program, and enrichment online Bioinformatics databases. The circRNAs hsa_circITGA4_002, hsa_circITGA4_001, hsa_circITGA4_003, hsa_circ_0030855, hsa_circ_0030857 were chosen from among GBM patients and control group. Upregulation of hsa-miR-1468, hsa-miR-3683, hsa-miR-1273c, and hsa-miR-4665-3p were associated with a poor prognosis in GBM. MicroRNA targets such as ITGA4, LAMA2, EGFR, PTEN, COL1A4, and NCAM2 were analyzed using expression and survival data. The Apoptosis, cell adhesion molecules, PI3K/AKT and P53 signaling pathways were the most abundant functional categories among gene targets. The circRNA molecular sponge regulatory network includes hsa-miR-1468 and hsa-miR-4665-3p. In this network, hs hsa_circITGA4_002, hsa_circITGA4_001, hsa_circ_0030857, EGFR, PTEN, and ITGA4 may represent GBM therapeutic targets. Their role in GBM needs additional study.


Subject(s)
Glioblastoma , MicroRNAs , Humans , RNA, Circular/genetics , Glioblastoma/genetics , Phosphatidylinositol 3-Kinases , MicroRNAs/genetics , MicroRNAs/metabolism , ErbB Receptors/genetics , Neural Cell Adhesion Molecules , PTEN Phosphohydrolase/genetics
11.
J Biomed Mater Res B Appl Biomater ; 112(1): e35310, 2024 01.
Article in English | MEDLINE | ID: mdl-37950592

ABSTRACT

To provide a long-term solution for increasing the biocompatibility of neuroprosthetics, approaches to reduce the side effects of invasive neuro-implantable devices are still in need of improvement. Physical, chemical, and bioactive design aspects of the biomaterials are proven to be important for providing proper cell-to-cell, cell-to-material interactions. Particularly, modification of implant surfaces with bioactive cues, especially cell adhesion molecules (CAMs) that capitalize on native neural adhesion mechanisms, are promising candidates in favor of providing efficient interfaces. Within this concept, this study utilized specific CAMs, namely N-Cadherin (Neural cadherin, N-Cad) and neural cell adhesion molecule (NCAM), to enhance neuron-electrode contact by mimicking the cell-to-ECM interactions for improving the survival of cells and promoting neurite outgrowth. For this purpose, representative gold electrode surfaces were modified with N-Cadherin, NCAM, and the mixture (1:1) of these molecules. Modifications were characterized, and the effect of surface modification on both differentiated and undifferentiated neuroblastoma SH-SY5Y cell lines were compared. The findings demonstrated the successful modification of these molecules which subsequently exhibited biocompatible properties as evidenced by the cell viability results. In cell culture experiments, the CAMs displayed promising results in promoting neurite outgrowth compared to conventional poly-l-lysine coated surfaces, especially NCAM and N-Cad/NCAM modified surfaces clearly showed significant improvement. Overall, this optimized approach is expected to provide an insight into the action mechanisms of cells against the local environment and advance processes for the fabrication of alternative neural interfaces.


Subject(s)
Neurites , Neuroblastoma , Humans , Neurites/metabolism , Neuroblastoma/metabolism , Neurons , Cell Adhesion Molecules , Cell Adhesion , Neural Cell Adhesion Molecules/metabolism , Neural Cell Adhesion Molecules/pharmacology , Cadherins/metabolism , Electrodes
12.
J Eur Acad Dermatol Venereol ; 38(4): 732-740, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38112333

ABSTRACT

BACKGROUND: Tanning beds were classified as first-group carcinogens in 2009. Nonetheless, research shows that people in industrialized Western countries use tanning beds. Based on the National Cancer Aid Monitoring (NCAM) including representative data on 28,000 individuals from Germany, we quantified the prevalence as a trend from 2015 to 2022, identified determinants of tanning bed use and analysed risk awareness and reasons for use. METHODS: We used NCAM data from 2015 to 2022 to analyse the trends in the prevalence of tanning bed use (n = 28,000). To determine the characteristics of tanning bed users, risk awareness and reasons, we combined data from the waves 2019 to 2022 (n = 16,000, 49.2% female, 16-65 years) in a pooled dataset to have sufficient power to detect even smaller associations. RESULTS: Tanning bed use decreased to 5.1% in 2022. The use of tanning beds in spas, fitness and beauty facilities increased, except during the COVID-19 pandemic, while the use in tanning salons decreased. Typical tanning bed users were female, middle-aged, occupied, higher educated, had an immigrant background and were former or current smokers. Risk awareness was the lowest among the current users. The most frequently mentioned reasons were relaxation, enhancement of attractiveness and pre-tanning. DISCUSSION: Our nationwide representative data showed that the prevalence of indoor tanning has decreased. Of concern are the lower risk awareness among current users and the shift in place of use towards facilities associated with health and wellness. To further reduce the use of tanning beds, targeted information, educational campaigns and extended legislation are considered helpful.


Subject(s)
Skin Neoplasms , Sunbathing , Middle Aged , Humans , Female , Male , Pandemics , Ultraviolet Rays/adverse effects , Skin Neoplasms/epidemiology , Skin Neoplasms/etiology , Germany/epidemiology , Neural Cell Adhesion Molecules , Beauty Culture
13.
Prog Neurobiol ; 232: 102560, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38097036

ABSTRACT

Damaged or dysfunctional neural circuits can be replaced after a lesion by axon sprouting and collateral growth from undamaged neurons. Unfortunately, these new connections are often disorganized and rarely produce clinical improvement. Here we investigate how to promote post-lesion axonal collateral growth, while retaining correct cellular targeting. In the mouse olivocerebellar path, brain-derived neurotrophic factor (BDNF) induces correctly-targeted post-lesion cerebellar reinnervation by remaining intact inferior olivary axons (climbing fibers). In this study we identified cellular processes through which BDNF induces this repair. BDNF injection into the denervated cerebellum upregulates the transcription factor Pax3 in inferior olivary neurons and induces rapid climbing fiber sprouting. Pax3 in turn increases polysialic acid-neural cell adhesion molecule (PSA-NCAM) in the sprouting climbing fiber path, facilitating collateral outgrowth and pathfinding to reinnervate the correct targets, cerebellar Purkinje cells. BDNF-induced reinnervation can be reproduced by olivary Pax3 overexpression, and abolished by olivary Pax3 knockdown, suggesting that Pax3 promotes axon growth and guidance through upregulating PSA-NCAM, probably on the axon's growth cone. These data indicate that restricting growth-promotion to potential reinnervating afferent neurons, as opposed to stimulating the whole circuit or the injury site, allows axon growth and appropriate guidance, thus accurately rebuilding a neural circuit.


Subject(s)
Brain-Derived Neurotrophic Factor , Neural Cell Adhesion Molecules , Animals , Mice , Axons/physiology , Cerebellum
14.
Arch Gerontol Geriatr ; 117: 105260, 2024 02.
Article in English | MEDLINE | ID: mdl-37979338

ABSTRACT

OBJECTIVES: Exercise training plays a significant role in preventing the destruction of central nerve neurons and muscle atrophy. The purpose of the present study was to investigate the effect of a period of swimming training on the expression of Neural cell adhesion molecule (NCAM), Semaphorin 3A (SEMA3A), and Profilin-1 (PFN1) proteins in the gastrocnemius muscle of Alzheimer-like phenotype rats. METHODS & MATERIALS: 32 Wistar males were (6 weeks of age) divided into four groups: Healthy Control (HC), Alzheimer-like phenotype's Control (AC), Healthy Training (HT), and Alzheimer-like phenotype's Training (AT). Alzheimer-like phenotypes were induced by beta-amyloid injection in the hippocampus. The training program consisted of 20 swimming sessions. Gastrocnemius muscle was removed after the intervention, and NCAM, SEMA3A, and PFN1 proteins were measured by the immunohistoflorescent method. RESULTS: The results showed that SEMA3A was increased (p = 0.001), and NCAM (p = 0.001), and PFN1 (p = 0.001) were decreased in AC compared to the HC group. Also, the results showed that NCAM (p = 0.001) and Pfn1 (p = 0.002) increased in the HT group compared to HC, and the NCAM (p = 0.001) and Pfn1 (p = 0.002) in AT group compared to AC (p = 0.001) increased significantly, while SEMA3A was reduced in the HT group compared to HC (p = 0.001) and AT group compared to AC (p = 0.001) CONCLUSION: Swimming effectively improves axon regeneration and neuronal formation in motor neurons and, therefore, can be an effective intervention to prevent and control the complications of Alzheimer-like phenotype.


Subject(s)
Alzheimer Disease , Swimming , Male , Humans , Rats , Animals , Rats, Wistar , Swimming/physiology , Semaphorin-3A/genetics , Semaphorin-3A/metabolism , Semaphorin-3A/pharmacology , Axons/metabolism , Nerve Regeneration , Muscle, Skeletal/metabolism , Neural Cell Adhesion Molecules/genetics , Neural Cell Adhesion Molecules/metabolism , Neural Cell Adhesion Molecules/pharmacology , Profilins/pharmacology
15.
J Biol Chem ; 300(1): 105564, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38103644

ABSTRACT

The polysialyltransferases ST8SIA2 and ST8SIA4 and their product, polysialic acid (polySia), are known to be related to cancers and mental disorders. ST8SIA2 and ST8SIA4 have conserved amino acid (AA) sequence motifs essential for the synthesis of the polySia structures on the neural cell adhesion molecule. To search for a new motif in the polysialyltransferases, we adopted the in silico Individual Meta Random Forest program that can predict disease-related AA substitutions. The Individual Meta Random Forest program predicted a new eight-amino-acids sequence motif consisting of highly pathogenic AA residues, thus designated as the pathogenic (P) motif. A series of alanine point mutation experiments in the pathogenic motif (P motif) showed that most P motif mutants lost the polysialylation activity without changing the proper enzyme expression levels or localization in the Golgi. In addition, we evaluated the enzyme stability of the P motif mutants using newly established calculations of mutation energy, demonstrating that the subtle change of the conformational energy regulates the activity. In the AlphaFold2 model, we found that the P motif was a buried ß-strand underneath the known surface motifs unique to ST8SIA2 and ST8SIA4. Taken together, the P motif is a novel buried ß-strand that regulates the full activity of polysialyltransferases from the inside of the molecule.


Subject(s)
Mutation , Sialyltransferases , Humans , Amino Acid Motifs/genetics , Amino Acid Substitution , Computer Simulation , Golgi Apparatus/enzymology , Golgi Apparatus/metabolism , Neural Cell Adhesion Molecules/chemistry , Neural Cell Adhesion Molecules/metabolism , Point Mutation , Protein Conformation, beta-Strand , Protein Transport , Random Forest , Sialic Acids/metabolism , Sialyltransferases/chemistry , Sialyltransferases/genetics , Sialyltransferases/metabolism
16.
Cells ; 12(21)2023 10 26.
Article in English | MEDLINE | ID: mdl-37947603

ABSTRACT

Cannabis is now one of the most commonly used illicit substances among pregnant women. This is particularly concerning since developmental exposure to cannabinoids can elicit enduring neurofunctional and cognitive alterations. This study investigates the mechanisms of learning and memory deficits resulting from prenatal cannabinoid exposure (PCE) in adolescent offspring. The synthetic cannabinoid agonist WIN55,212-2 was administered to pregnant rats, and a series of behavioral, electrophysiological, and immunochemical studies were performed to identify potential mechanisms of memory deficits in the adolescent offspring. Hippocampal-dependent memory deficits in adolescent PCE animals were associated with decreased long-term potentiation (LTP) and enhanced long-term depression (LTD) at hippocampal Schaffer collateral-CA1 synapses, as well as an imbalance between GluN2A- and GluN2B-mediated signaling. Moreover, PCE reduced gene and protein expression of neural cell adhesion molecule (NCAM) and polysialylated-NCAM (PSA-NCAM), which are critical for GluN2A and GluN2B signaling balance. Administration of exogenous PSA abrogated the LTP deficits observed in PCE animals, suggesting PSA mediated alterations in GluN2A- and GluN2B- signaling pathways may be responsible for the impaired hippocampal synaptic plasticity resulting from PCE. These findings enhance our current understanding of how PCE affects memory and how this process can be manipulated for future therapeutic purposes.


Subject(s)
Cannabinoids , Neural Cell Adhesion Molecules , Humans , Rats , Female , Animals , Pregnancy , Adolescent , Neural Cell Adhesion Molecules/metabolism , Cannabinoids/pharmacology , Cannabinoids/metabolism , Neuronal Plasticity/physiology , Hippocampus/metabolism , Memory Disorders/metabolism
17.
Sci Adv ; 9(37): eadi3647, 2023 09 15.
Article in English | MEDLINE | ID: mdl-37713494

ABSTRACT

Neuron-derived extracellular vesicles (NDEVs) are potential biomarkers of neurological diseases although their reliable molecular target is not well established. Here, we demonstrate that ATPase Na+/K+ transporting subunit alpha 3 (ATP1A3) is abundantly expressed in extracellular vesicles (EVs) isolated from induced human neuron, brain, cerebrospinal fluid, and plasma in comparison with the presumed NDEV markers NCAM1 and L1CAM by using super-resolution microscopy and biochemical assessments. Proteomic analysis of immunoprecipitated ATP1A3+ brain-derived EVs shows higher enrichment of synaptic markers and cargo proteins relevant to Alzheimer's disease (AD) compared to NCAM1+ or LICAM+ EVs. Single particle analysis shows the elevated amyloid-ß positivity in ATP1A3+ EVs from AD plasma, providing better diagnostic prediction of AD over other plasma biomarkers. Thus, ATP1A3 is a reliable target to isolate NDEV from biofluids for diagnostic research.


Subject(s)
Alzheimer Disease , Extracellular Vesicles , Humans , Proteomics , Brain , Neural Cell Adhesion Molecules , Neurons , Sodium-Potassium-Exchanging ATPase
18.
Cereb Cortex ; 33(21): 10931-10948, 2023 10 14.
Article in English | MEDLINE | ID: mdl-37724425

ABSTRACT

Adult neurogenesis persists in mammals in the neurogenic zones, where newborn neurons are incorporated into preexisting circuits to preserve and improve learning and memory tasks. Relevant structural elements of the neurogenic niches include the family of cell adhesion molecules (CAMs), which participate in signal transduction and regulate the survival, division, and differentiation of radial glial progenitors (RGPs). Here we analyzed the functions of neural cell adhesion molecule 2 (NCAM2) in the regulation of RGPs in adult neurogenesis and during corticogenesis. We characterized the presence of NCAM2 across the main cell types of the neurogenic process in the dentate gyrus, revealing different levels of NCAM2 amid the progression of RGPs and the formation of neurons. We showed that Ncam2 overexpression in adult mice arrested progenitors in an RGP-like state, affecting the normal course of young-adult neurogenesis. Furthermore, changes in Ncam2 levels during corticogenesis led to transient migratory deficits but did not affect the survival and proliferation of RGPs, suggesting a differential role of NCAM2 in adult and embryonic stages. Our data reinforce the relevance of CAMs in the neurogenic process by revealing a significant role of Ncam2 levels in the regulation of RGPs during young-adult neurogenesis in the hippocampus.


Subject(s)
Neurogenesis , Neurons , Mice , Animals , Neurons/physiology , Neurogenesis/physiology , Cell Differentiation/physiology , Neural Cell Adhesion Molecules/metabolism , Hippocampus/metabolism , Mammals/metabolism
19.
Bioorg Chem ; 140: 106828, 2023 11.
Article in English | MEDLINE | ID: mdl-37690368

ABSTRACT

In drug discovery and development, the direct target identification of bioactive small molecules plays a significant role for understanding the mechanism of action, predicting the side effects, and rationally designing more potent compounds. However, due to the complicated regulatory processes in a cell together with thousands of biomacromolecules, target identification is always the major obstacle. New methods and technologies are continuously invented to tackle this problem. Nevertheless, the mainly used tools possess several disadvantages. High synthetic skills are typically required to laboriously synthesize a probe for protein enrichment. To detect the ligand-protein interaction by analyzing proteins' responses to proteolytic or thermal treatment, costly and precise instruments are always necessary. Therefore, convenient and practical techniques are urgently needed. Over the past decades, a strategy using native compounds without the requirement of chemical modification, also termed Native-compound-Coupled Affinity Matrix (NCAM), is developing continuously. Two practical tactics based on "label-free" compounds have been invented and used, that is Photo-cross-linked Small-molecule Affinity Matrix (PSAM) and Native-compound-Coupled CNBr-activated Beads (NCCB). Presently, we will elucidate the characteristics, coupling mechanism, advantages and disadvantages, and future prospect of NCAM in specific target identification and validation.


Subject(s)
Drug Discovery , Peptide Hydrolases , Proteolysis , Neural Cell Adhesion Molecules
20.
Cereb Cortex ; 33(18): 10047-10065, 2023 09 09.
Article in English | MEDLINE | ID: mdl-37522285

ABSTRACT

The neural cell adhesion molecule 2 (NCAM2) regulates axonal organization in the central nervous system via mechanisms that have remained poorly understood. We now show that NCAM2 increases axonal levels of beta-site amyloid precursor protein cleaving enzyme 1 (BACE1), a protease that regulates axonal guidance. In brains of NCAM2-deficient mice, BACE1 levels are reduced in hippocampal mossy fiber projections, and the infrapyramidal bundle of these projections is shortened. This abnormal axonal organization correlates with impaired short-term spatial memory and cognitive flexibility in NCAM2-deficient male and female mice. Self-grooming, rearing, digging and olfactory acuity are increased in NCAM2-deficient male mice, when compared with littermate wild-type mice of the same sex. NCAM2-deficient female mice also show increased self-grooming, but are reduced in rearing, and do not differ from female wild-type mice in olfactory acuity and digging behavior. Our results indicate that errors in axonal guidance and organization caused by impaired BACE1 function can underlie the manifestation of neurodevelopmental disorders, including autism as found in humans with deletions of the NCAM2 gene.


Subject(s)
Alzheimer Disease , Amyloid beta-Protein Precursor , Animals , Female , Humans , Male , Mice , Alzheimer Disease/metabolism , Amyloid beta-Peptides/metabolism , Amyloid beta-Protein Precursor/genetics , Amyloid beta-Protein Precursor/metabolism , Amyloid Precursor Protein Secretases/genetics , Amyloid Precursor Protein Secretases/metabolism , Aspartic Acid Endopeptidases/genetics , Aspartic Acid Endopeptidases/metabolism , Hippocampus/metabolism , Mossy Fibers, Hippocampal , Neural Cell Adhesion Molecules/genetics , Neural Cell Adhesion Molecules/metabolism
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