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1.
ObjectivesMutations in the exon 4 of the COMT gene are associated with chronic persistent surgical pain (CPSP). Especially COMT mutated allele G472A (Val158Met) associated with CPSP patients is reported in different ethnic population. The purpose of this study is to evaluate the prevalence of genetic mutations and structural variations in exon 4 of COMT that can be related to the appearance of CPSP in patients under sternotomy.Materials and methodsOne hundred patients with American Society of Anesthesiologists (ASA) physical status grades i, ii and iii, who underwent sternotomy procedures, were selected to assess the development and magnitude of the CPSP evaluated with pain questionaries’ at the end of three months after surgery. This was correlated with COMT allele presence. The exon 4 of COMT gene (that contains the G472A allele) was studied. The polymerase chain reaction (PCR) products were sequenced and mutated sequences were deposited in GenBank®. The structural analysis of COMT was performed using ProCheck® and distortions of three-dimensional tertiary structural orientation was evaluated with root-mean-square deviation (RMSD) score.ResultsGenetic analysis carried out through PCR showed 220 bp amplicons. The 25% of patients with CPSP showed a Numeric Rating Scale (NRS) > 4 pain score. The 20% of these patients have known Val158Met mutation, 5% of patients showed novel mutations c.382C>G, c.383G>C, p.(Arg128Ala). The mutations in COMT gene contributed major structural variations in COMT leading to the formation of inactive COMT that correlates with CPSP.ConclusionThe results of the present study showed that both novel and previously reported mutations in COMT gene has strong association with CPSP.  相似文献   
2.
Epigenetic alterations of the brain‐derived neurotrophic factor (BDNF) gene have been associated with psychiatric disorders in humans and with differences in amygdala BDNF mRNA levels in rodents. This human study aimed to investigate the relationship between the functional BDNF‐Val66Met polymorphism, its surrounding DNA methylation in BDNF exon IX, amygdala reactivity to emotional faces, and personality traits. Healthy controls (HC, n = 189) underwent functional MRI during an emotional face‐matching task. Harm avoidance, novelty seeking and reward dependence were measured using the Tridimensional Personality Questionnaire (TPQ). Individual BDNF methylation profiles were ascertained and associated with several BDNF single nucleotide polymorphisms surrounding the BDNF‐Val66Met, amygdala reactivity, novelty seeking and harm avoidance. Higher BDNF methylation was associated with higher amygdala reactivity (x = 34, y = 0, z = ?26, t(166) = 3.00, TFCE = 42.39, p(FWE) = .045), whereby the BDNF‐Val66Met genotype per se did not show any significant association with brain function. Furthermore, novelty seeking was negatively associated with BDNF methylation (r = ?.19, p = .015) and amygdala reactivity (r = ?.17, p = .028), while harm avoidance showed a trend for a positive association with BDNF methylation (r = .14, p = .066). The study provides first insights into the relationship among BDNF methylation, BDNF genotype, amygdala reactivity and personality traits in humans, highlighting the multidimensional relations among genetics, epigenetics, and neuronal functions. The present study suggests a possible involvement of epigenetic BDNF modifications in psychiatric disorders and related brain functions, whereby high BDNF methylation might reduce BDNF mRNA expression and upregulate amygdala reactivity.  相似文献   
3.
IntroductionMissense variants and multiplications of the alpha-synuclein gene (SNCA) are established as rare causes of autosomal dominant forms of Parkinson's Disease (PD).MethodsTwo families of Turkish origins with PD were studied; the SNCA coding region was analyzed by Sanger sequencing, and by whole exome sequencing (WES) in the index patient of the first and the second family, respectively. Co-segregation studies and haplotype analysis across the SNCA locus were carried out. Functional studies included in vitro thioflavin-T aggregation assay and in silico structural modelling of the alpha-synuclein (α-syn) protein.ResultsWe identified a novel heterozygous SNCA variant, c.215C > T (p.Thr72Met), segregating with PD in a total of four members in the two families. A shared haplotype across the SNCA locus was found among variant carriers, suggestive of a common ancestor. We next showed that the Thr72Met α-syn displays enhanced aggregation in-vitro, compared to the wild-type species. In silico analysis of a tetrameric α-syn structural model revealed that Threonine 72 lies in the tetrameric interface, and substitution with the much larger methionine residue could potentially destabilize the tetramer.ConclusionWe present clinical, genetic, and functional data supporting a causative role of the SNCA c.215C > T (p.Thr72Met) variant in familial PD. Testing for this variant in patients with PD, especially of Turkish origin, might detect additional carriers. Further functional analyses might offer new insights into the shared biochemical properties of the PD-causing SNCA missense variants, and how they lead to neurodegeneration.  相似文献   
4.
The Brain-Derived Neurotrophic Factor (BDNF) Val66Met polymorphism has been correlated with increased predisposition to develop cognitive and psychiatric disorders, and with a reduced response to some therapeutic treatments. However, the mechanisms underlying these impairments are currently not completely understood. Remarkably, kynurenine pathway alterations have also been implicated in cognitive and psychiatric disorders. Moreover, recent evidence suggests that physical exercise may promote beneficial effects by controlling kynurenine metabolism in the muscle.The aim of the present study was to assess whether the kynurenine pathway was differentially regulated in sedentary and exercising wild-type (BDNFVal/Val) and homozygous knock-in BDNF Val66Met (BDNFMet/Met) mice. We found that plasma and hippocampal levels of kynurenic acid and the hippocampal mRNA levels of IDO1 and KAT2 protein levels were increased in BDNFMet/Met mice and were not modulated by physical exercise. On the contrary, KAT1 protein levels in the gastrocnemius muscle were reduced, whereas MCP1 mRNA in the gastrocnemius muscle and GFAP protein in the hippocampus were increased in BDNFMet/Met mice compared to BDNFVal/Val mice, and reduced by physical exercise. Physical exercise increased plasmatic kynurenine levels only in BDNFMet/Met mice, and protein levels of KAT1 and KAT4 in the gastrocnemius muscle and hippocampus respectively, regardless of the genotype. Finally, we found that physical exercise was able to enhance the hippocampal-dependent memory only in the BDNFVal/Val mice. Overall our results showing an overactivation of the kynurenine pathway in the BDNFMet/Met mice may suggest a possible mechanism underlying the cognitive deficits reported in the BDNF Val66Met carriers.  相似文献   
5.
目的探讨弥漫性轴索损伤(DAI)(Ⅱ型)患者伤后1个月血清脑源性神经营养因子(BDNF)水平及其Val66Met基因多态性与认知功能的关系。 方法选取晋江市医院神经外科自2015年8月至2020年8月收治的106例DAI(Ⅱ型)患者为病例组,选择同期来本院体检的105名健康体检者为对照组,采用第二版洛文斯顿作业疗法认知量表(LOTCA)、蒙特利尔评估量表中文版(MoCA)分别评估对照组和病例组伤后1个月时的认知功能;采用酶联免疫吸附试验测定2组研究对象的血清BDNF水平;聚合酶链反应-限制性片段长度多态性分析BDNF Val66Met基因多态性;多元逐步回归法分析病例组整体认知功能与BDNF及BDNF Val66Met基因多态性的相关性。 结果病例组伤后1个月相同基因亚型血清BDNF浓度均低于对照组,差异有统计学意义(P<0.05);病例组Val/Val亚型血清BDNF浓度高于Val/MetMet/Met亚型,差异有统计学意义(P<0.05),而Val/MetMet/Met亚型血清BDNF浓度比较差异无统计学意义(P>0.05)。病例组患者3种基因亚型伤后1个月的LOTCA和MoCA评分均低于对照组,差异有统计学意义(P<0.05);病例组Val/Val亚型评分高于Val/MetMet/Met评分,差异有统计学意义(P<0.05),而Val/MetMet/Met亚型评分比较,差异无统计学意义(P>0.05)。DAI(Ⅱ型)整体认知水平与BDNF Val66Met基因多态性、BDNF浓度具有线性回归关系(F=11.417,P<0.001),其具有一定的相关性(|β|=0.966、0.877;r=0.569、0.579)。 结论BDNF可影响DAI认知功能,其BDNF Val66Met基因多态性可能是影响DAI认知功能的风险因素之一。  相似文献   
6.
The cardiac sarcoplasmic reticulum calcium ATPase (SERCA2a) plays a critical role in maintaining the intracellular calcium homeostasis during cardiac contraction and relaxation. It has been well documented over the years that altered expression and activity of SERCA2a can lead to systolic and diastolic dysfunction. The activity of SERCA2a is regulated by two structurally similar proteins, phospholamban (PLB) and sarcolipin (SLN). Although, the relevance of PLB has been extensively studied over the years, the role SLN in cardiac physiology is an emerging field of study. This review focuses on the advances in the understanding of the regulation of SERCA2a by SLN and PLB. In particular, it highlights the similarities and differences between the two proteins and their roles in cardiac patho-physiology.  相似文献   
7.
We have previously reported that an adaptor protein CRK, including CRK‐I and CRK‐II, plays essential roles in the malignant potential of various aggressive human cancers, suggesting the validity of targeting CRK in molecular targeted therapy of a wide range of cancers. Nevertheless, the role of CRK in human bladder cancer with marked invasion, characterized by distant metastasis and poor prognosis, remains obscure. In the present study, immunohistochemistry indicated a striking enhancement of CRK‐I/‐II, but not CRK‐like, in human bladder cancer tissues compared to normal urothelium. We established CRK‐knockdown bladder cancer cells using 5637 and UM‐UC‐3, which showed a significant decline in cell migration, invasion, and proliferation. It is noteworthy that an elimination of CRK conferred suppressed phosphorylation of c‐Met and the downstream scaffold protein Gab1 in a hepatocyte growth factor‐dependent and ‐independent manner. In epithelial–mesenchymal transition‐related molecules, E‐cadherin was upregulated by CRK elimination, whereas N‐cadherin, vimentin, and Zeb1 were downregulated. A similar effect was observed following treatment with c‐Met inhibitor SU11274. Depletion of CRK significantly decreased cell proliferation of 5637 and UM‐UC‐3, consistent with reduced activity of ERK. An orthotopic xenograft model with bioluminescent imaging revealed that CRK knockdown significantly attenuated not only tumor volume but also the number of circulating tumor cells, resulted in a complete abrogation of metastasis. Taken together, this evidence uncovered essential roles of CRK in invasive bladder cancer through the hepatocyte growth factor/c‐Met/CRK feedback loop for epithelial–mesenchymal transition induction. Thus, CRK might be a potent molecular target in bladder cancer, particularly for preventing metastasis, leading to the resolution of clinically longstanding critical issues.  相似文献   
8.
IntroductionSchizophrenia is a complex neuropsychiatric disorder with deficits of multiple domains of cognitive functions, volition and emotions. Family and twin studies have provided cumulative evidence for the genetic basis of schizophrenia. The aetiolgy of this disease involves the interplay of multifactiorial inheritance operating on brain maturational processes and polygenic inheritance with some genes showing susceptibility at many genomic locations such as 22q and 11q.The catechol-O-methyltransferase (COMT-22q11) is an extensively studied candidate gene for schizophrenia. COMT acts as an enzymatic detoxicating barrier between the blood and other tissues regulating the amounts of active dopamine and norepinephrine in various parts of the brain and therefore to be associated with schizophrenia.The presence of a common functional single nucleotide polymorphism (SNP) in exon 4 [Guanine (G) Adenine (A); Val108/158Met], alters the enzymatic activity with a trimodal distribution of high-HH, intermediate-HL and low-LL activity alleles which appear to have association with schizophrenia.Brain-derived neurotrophic factor (BDNF-11q13) is a member of the nerve growth factor family working as a molecular regulator of neuronal development and plasticity. Molecules that are critical in the development and survival of neurons such as BDNF play a significant role in the neuropathology of schizophrenia. While upregulation of BDNF increases the neuronal cell size and synaptic plasticity, a functional polymorphism at codon 66 [G→A; Val66Met] down regulates this process and induces schizophrenia.ObjectiveIn the present study, our aim was to investigate the differences in allele frequencies between schizophrenic patients [n = 97 (51 men, 46 women)] and control group [n = 376 (228 men, 148 women)] subjects.ResultsWhen the control and schizophrenia groups were compared for BDNFVal66Met polymorphism, we did not find a significant difference between the study groups either for genotype (χ2 = 3.370447, p > 0.05) or Val/Met haplotype analysis (χ2 = 2.840264, p > 0.05). When a comparison was revealed for COMT-Val108/158Met polymorphism, no significant difference was detected among schizophrenia and control groups for genotype (χ2 = 0.373330, p > 0.05) and Val/Met haplotype analysis (χ2 = 0.339073, p > 0.05). When the control and study groups were compared for BDNFVal66Met–COMTVal108/158Met polymorphisms compound genotype and haplotype analyses, there was no significant difference between the two groups (χ2 = 11.015; p > 0.05 and χ2 = 3.191; p > 0.05), respectively.ConclusionOur results indicate that there is no association between schizophrenia and BDNF–COMT polymorphisms and haplotypes analysis. We also did not find an association between schizophrenia and BDNF–COMT compound genotype and haplotype analyses. Although our study is unique in Turkey as combining BDNF and COMT compound genotype–haplotype analyses, for a generalization of Turkish schizophrenia patient's susceptibility to schizophrenia; we need further studies with an enlarged cohort.  相似文献   
9.
Objective. The aim of our study was to assess whether the catechol-O-methyltransferase (COMT) genetic background of patients dependent on metamphetamine is related to their non-abstinence in a 1-year follow-up. Methods. We examined COMT gene Val158Met polymorphism and 1-year abstinence in a group of 31 (women N=8) Czech Caucasian metamphetamine abusers (average age, 23.8±4.0years). Results. Non-abstinence was significantly (P=0.046, Fisher's exact test) associated with the heterozygous Val/Met genotype. Conclusion. The case where subjects heterozygous for a specific genetic polymorphism show a significantly greater or lesser effect for a phenotypic trait than subjects homozygous for either allele is described as molecular heterosis in the literature. We discuss several explanations and recommendations for further research.  相似文献   
10.
Abstract

1.?Fibromyalgia syndrome (FMS) is a common chronic widespread pain syndrome mainly affecting women. The aim of this study was to explore the frequency and clinical significance of catechol-O-methyltransferase (COMT) gene Val158Met polymorphism in a large cohort of Turkish patients with FMS.

2.?The study included 379 FMS patients and 290 controls. Genomic DNA was isolated and genotyped using polymerase chain reaction (PCR) and restriction fragment length polymorphism (RFLP) analyses.

3.?The genotype frequencies of Val158Met polymorphism showed a small difference between FMS patients and healthy controls (p?=?0.047), however, the Met/Met genotype was significantly higher in FMS patients than healthy controls (p?=?0.016). No difference was observed for allele frequencies between two groups. Stratification analysis according to clinical features for this disease reveals that weight, FMS Impact Questionnaire score, algometry and Raynaud’s syndrome, were detected to have statistically significant associations with Val158Met polymorphism (p?=?0.037, p?=?0.042, p?=?0.039 and p?=?0.033, respectively). Pain sensitivity, measured by algometry, was statistically higher in patients with Met/Met genotype than the patients with Val/Val and Val/Met genotypes (p?=?0.017).

4.?The results of this study suggested that COMT gene Val158Met polymorphism is positively associated with FMS and play a relevant role in the clinical symptoms of the disease.  相似文献   
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