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991.
Cardiac injury upon myocardial infarction (MI) is the leading cause of heart failure. The present study aims to investigate the role of EndoA2 in ischemia-induced cardiomyocyte apoptosis and cardiac injury. In vivo, we established an MI mouse model by ligating the left anterior descending (LAD) coronary artery, and intramyocardial injection of adenoviral EndoA2 (Ad-EndoA2) was used to overexpress EndoA2. In vitro, we used the siRNA and Ad-EndoA2 transfection strategies. Here, we reported that EndoA2 expression was remarkably elevated in the infarct border zone of MI mouse hearts and neonatal rat cardiomyocytes (NRCMs) stimulated with oxygen and glucose deprivation (OGD) which mimicked ischemia. We showed that intramyocardial injection of Ad-EndoA2 attenuated cardiomyocyte apoptosis and reduced endoplasmic reticulum (ER) stress in response to MI injury. Using siRNA for knockdown and Ad-EndoA2 for overexpression, we validated that knockdown of EndoA2 in NRCMs exacerbated OGD-induced NRCM apoptosis, whereas overexpression of EndoA2 attenuates OGD-induced cardiomyocyte apoptosis. Mechanistically, knockdown of EndoA2 activated ER stress response, which increases ER oxidoreductase 1α (ERO1α) and inositol 1, 4, 5-trisphosphate receptor (IP3R) activity, thus led to increased intracellular Ca2+ accumulation, followed by elevated calcineurin activity and nuclear factor of activated T-cells (NFAT) dephosphorylation. Pretreatment with the IP3R inhibitor 2-Aminoethoxydiphenylborate (2-APB) attenuated intracellular Ca2+ accumulation, and pretreatment with the Ca2+ chelator 1,2-bis(o-aminophenoxy)ethane-N,N,N′,N′-tetraacetic acid (BAPTA) or the calcineurin inhibitor Cyclosporin A (CsA) inhibited EndoA2-knockdown-induced NRCM apoptosis. Overexpression of EndoA2 led to the opposite effects by suppressing ER-stress-mediated ERO1α/IP3R signaling pathway. This study demonstrated that EndoA2 protected cardiac function in response to MI via attenuating ER-stress-mediated ERO1α/IP3R signaling pathway. Targeting EndoA2 is a potential therapeutic strategy for the prevention of postinfarction-induced cardiac injury and heart failure.  相似文献   
992.
New-onset diabetes mellitus has a rough correlation with pancreatic cancer (PaC), but the underlying mechanism remains unclear. This study aimed to explore the exosomal microRNAs and their potential role in PaC-induced β-cell dysfunction. The pancreatic β cells were treated with isolated exosomes from PaC cell lines, SW1990 and BxPC-3, before measuring the glucose-stimulated insulin secretion (GSIS), validating that SW1990 and BxPC-3 might disrupt GSIS of both β cell line MIN6 and primary mouse pancreatic islets. The difference in expression profiles between exosomes and exosome-free medium of PaC cell lines was further defined, revealing that miR-19a secreted by PaC cells might be an important signaling molecule in this process. Furthermore, adenylyl cyclase 1 (Adcy1) and exchange protein directly activated by cAMP 2 (Epac2) were verified as the direct targets of exogenous miR-19a, which was involved in insulin secretion. These results indicated that exosomes might be an important mediator in the pathogenesis of PaC-DM, and miR-19a might be the effector molecule. The findings shed light on the pathogenesis of PaC-DM.  相似文献   
993.
采后香蕉果实中多胺含量的变化   总被引:5,自引:0,他引:5  
以巴西香蕉为试材,研究了果实中主要多胺类型,以及随贮期延长,果皮和果肉中精胺,亚精胺和腐胺3种多胺的变化情况。研究结果表明,在巴西香蕉果实中含有精胺,亚精胺和腐胺3种类型。随着贮期延长,精胺,亚精胺含量有所下降或基本保持不变,而腐胺则有所增加,这种变化在果皮,果肉中基本相同。  相似文献   
994.
纤维堆囊菌的多细胞形态发生过程   总被引:3,自引:0,他引:3  
粘细菌是具有复杂多细胞行为的革蓝氏阴性细菌,纤维堆囊菌是粘细菌中唯一能够降解纤维素的粘细菌种属。本文通过扫描电子显微镜和相差光学显微镜,分析了纤维堆囊菌在纤维素基质上的生长和子实体形态发生的多细胞行为特征,给出了生长和子实体发育的模式图谱。  相似文献   
995.
目的 从病理学和组织化学角度观察内毒素性肺损伤时肺组织超微结构和 NOS阳性染色细胞数的变化。方法 采用电镜、还原型辅酶 - -黄递酶 (NADPH- d)组织化学技术观察兔内毒素性急性肺损伤时肺组织超微结构的改变和肺内小血管、细小支气管、肺泡的 NOS阳性染色细胞数目的变化。结果 :内毒素注射后观察 30分钟组 (I3 0′组 )与内毒素注射后观察 1周组 (Iw 组 ) ,肺内小血管、 NOS阳性染色细胞数明显增多 ,细小支气管和肺泡则减少。 I3 0′组与 Iw 组分别与 C组比较 :(小动脉 :I3 0 vs C,P<0 .0 1;Iwvs C,P<0 .0 0 1;小静脉 :I3 0 vs C,P<0 .0 1;Iw vs C,P<0 .0 5 ;细小支气管 :I3 0vs C与 Iwvs C均为 P<0 .0 2 ;肺泡 :I3 0 vs C与 Iwvs C均为 P<0 .0 1)。电镜结果显示 ,I3 0′组部分肺毛细血管内见有大量红细胞集聚 ,毛细血管内皮变薄 ,微细结构不甚清楚 ,Iw组部分毛细血管内皮细胞损伤状况较 I3 0′组更显严重 ,除较多见红细胞渗入肺泡腔外 ,尚见部分肺泡上皮结构不甚完整而呈泡状改变。结论 内毒素性肺损伤 ,肺内 NOS阳性染色细胞数在小血管明显增加 ,在支气管内 ,肺泡内则明显减少。  相似文献   
996.
Transforming growth factor beta (TGF-β) stimulates protein complex formation on a TGF-β response element (TAE) found in the distal portion (−1624) of the collagen alpha 1(I) promoter. To identify the fibroblast proteins in this complex, an expression library constructed from human embryonic lung fibroblasts mRNA was screened using a tetramer of TAE. Y-box binding protein (YB-1), was identified as a protein in the TAE–protein complex. The protein expressed by phage clones formed a specific complex with labeled TAE but not mutated TAE (mTAE) similar to the complex formed with nuclear protein. Nuclear protein–TAE complexes isolated from native gels contained YB-1 by Western analysis. TGF-β treatment increased the amount of YB-1 protein in nuclear extracts, decreased its amount in cytoplasm, but did not alter the steady state levels of YB-1 mRNA. A full-length YB-1 protein expressed in human lung fibroblasts was primarily located in the nucleus with punctate staining in cytoplasmic regions. The expression of YB-1 decreased in the cytoplasm after 2 h of TGF-β treatment. Therefore, the increased binding activity seen in TGF-β-stimulated nuclear extracts was due primarily to relocalization of YB-1 from the cytoplasm to the nuclear compartment. Co-transfection of YB-1 cDNA with a collagen promoter–reporter construct caused a dose-dependent activation of collagen promoter activity in rat fibroblasts whereas the promoter with a mutation in the TAE element was not sensitive to YB-1 co-expression. In conclusion, we have identified YB-1 as a protein that interacts with a TGF-β response element in the distal region of the collagen alpha 1(I) gene. YB-1 protein activates the collagen promoter and translocates into the nucleus during TGF-β addition to fibroblasts, suggesting a role for this protein in TGF-β signaling.  相似文献   
997.
Protein collective motions play a critical role in many biochemical processes. How to predict the functional motions and the related key residue interactions in proteins is important for our understanding in the mechanism of the biochemical processes. Normal mode analysis (NMA) of the elastic network model (ENM) is one of the effective approaches to investigate the structure-encoded motions in proteins. However, the motion modes revealed by the conventional NMA approach do not necessarily correspond to a specific function of protein. In the present work, a new analysis method was proposed to identify the motion modes responsible for a specific function of proteins and then predict the key residue interactions involved in the functional motions by using a perturbation approach. In our method, an internal coordinate that accounts for the specific function was introduced, and the Cartesian coordinate space was transformed into the internal/Cartesian space by using linear approximation, where the introduced internal coordinate serves as one of the axes of the coordinate space. NMA of ENM in this internal/Cartesian space was performed and the function-relevant motion modes were identified according to their contributions to the specific function of proteins. Then the key residue interactions important for the functional motions of the protein were predicted as the interactions whose perturbation largely influences the fluctuation along the internal coordinate. Using our proposed methods, the maltose transporter (MalFGK2) from E. Coli was studied. The functional motions and the key residue interactions that are related to the channel-gating function of this protein were successfully identified.  相似文献   
998.
999.
1000.
Phenotypes of inter-alpha-trypsin-inhibitor (ITI) have been determined by isoelectric focusing on polyacrylamide gels followed by immunofixation. The phenotype frequencies of ITI in the Han population in Chengdu, P. R. China have been investigated using this method. In addition, family studies have been conducted in 21 families. The results show that ITI is polymorphic in the Han population in Chengdu, China. The allele frequencies are as follows: ITI*1 = 0.5763. ITI*2 = 0.4107, ITI*3 = 0.0130. ITI is thus a new and promising genetic marker that can be used in the field of forensic haematogenetics.  相似文献   
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