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Unlike other antiapoptotic Bcl-2 family members, Mcl-1 also mediates resistance to cancer therapy by uniquely inhibiting chemotherapy-induced senescence (CIS). In general, Bcl-2 family members regulate apoptosis at the level of the mitochondria through a common prosurvival binding groove. Through mutagenesis, we determined that Mcl-1 can inhibit CIS even in the absence of its apoptotically important mitochondrion-localizing domains. This finding prompted us to generate a series of Mcl-1 deletion mutants from both the N and C termini of the protein, including one that contained a deletion of all of the Bcl-2 homology domains, none of which impacted anti-CIS capabilities. Through subsequent structure-function analyses of Mcl-1, we identified a previously uncharacterized loop domain responsible for the anti-CIS activity of Mcl-1. The importance of the loop domain was confirmed in multiple tumor types, two in vivo models of senescence, and by demonstrating that a peptide mimetic of the loop domain can effectively inhibit the anti-CIS function of Mcl-1. The results from our studies appear to be highly translatable because we discerned an inverse relationship between the expression of Mcl-1 and of various senescence markers in cancerous human tissues. In summary, our findings regarding the unique structural properties of Mcl-1 provide new approaches for targeted cancer therapy.  相似文献   
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Past studies have suggested that a key feature of the mechanism of heparin allosteric activation of the anticoagulant serpin, antithrombin, is the release of the reactive center loop P14 residue from a native state stabilizing interaction with the hydrophobic core. However, more recent studies have indicated that this structural change plays a secondary role in the activation mechanism. To clarify this role, we expressed and characterized 15 antithrombin P14 variants. The variants exhibited basal reactivities with factors Xa and IXa, heparin affinities and thermal stabilities that were dramatically altered from wild type, consistent with the P14 mutations perturbing native state stability and shifting an allosteric equilibrium between native and activated states. Rapid kinetic studies confirmed that limiting rate constants for heparin allosteric activation of the mutants were altered in conjunction with the observed shifts of the allosteric equilibrium. However, correlations of the P14 mutations'' effects on parameters reflecting the allosteric activation state of the serpin were inconsistent with a two-state model of allosteric activation and suggested multiple activated states. Together, these findings support a minimal three-state model of allosteric activation in which the P14 mutations perturb equilibria involving distinct native, intermediate, and fully activated states wherein the P14 residue retains an interaction with the hydrophobic core in the intermediate state but is released from the core in the fully activated state, and the bulk of allosteric activation has occurred in the intermediate.  相似文献   
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Eukaryotic protein kinases are typically strictly controlled by second messenger binding, protein/protein interactions, dephosphorylations or similar processes. None of these regulatory mechanisms is known to work for protein kinase CK2 (former name “casein kinase 2”), an acidophilic and constitutively active eukaryotic protein kinase. CK2 predominantly exists as a heterotetrameric holoenzyme composed of two catalytic subunits (CK2α) complexed to a dimer of non-catalytic subunits (CK2β). One model of CK2 regulation was proposed several times independently by theoretical docking of the first CK2 holoenzyme structure. According to this model, the CK2 holoenzyme forms autoinhibitory aggregates correlated with trans-autophosphorylation and driven by the down-regulatory affinity between an acidic loop of CK2β and the positively charged substrate binding region of CK2α from a neighboring CK2 heterotetramer. Circular trimeric aggregates in which one-half of the CK2α chains show the predicted inhibitory proximity between those regions were detected within the crystal packing of the human CK2 holoenzyme. Here, we present further in vitro support of the “regulation-by-aggregation” model by an alternative crystal form in which CK2 tetramers are arranged as approximately linear aggregates coinciding essentially with the early predictions. In this assembly, the substrate binding region of every CK2α chain is blocked by a CK2β acidic loop from a neighboring tetramer. We found these crystals with CK2Andante that contains a CK2β variant mutated in a CK2α-contact helix and described to be responsible for a prolonged circadian rhythm in Drosophila. The increased propensity of CK2Andante to form aggregates with completely blocked active sites may contribute to this phenotype.  相似文献   
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目的:探讨非小细胞肺癌术后并发乳糜胸对患者生活质量的影响。方法:采用生活质量测定量表(QLQ-C30)回顾性分析第四军医大学唐都医院胸外科自2013年至2016年中收治的1015例肺癌手术患者的生活质量,发生乳糜胸组记为A组,未发生乳糜胸组记为B组。对比术前和术后1、3、6和12个月的生活质量有无统计学差异。结果:(1)术后1月时,除了社会功能、便秘、腹泻以外,两组生活质量指标评分均显著低于术前,且B组均显著低于A组,有统计学差异(表3,P0.05)。在手术后3月及以后逐渐恢复,至12月时,各组指标与术前基本相同(表3,P0.05);(2)两组术后生活质量相比较,术后1、3月,除社会功能、便秘、腹泻以外,其余生活质量功能指标B组均显著优于A组,有统计学差异(表3,P0.05)。在手术后6月及以后,B组所有指标与A组无统计学差异(表3,P0.05)。结论:肺癌根治术后发生乳糜胸患者生活质量显著低于未发生乳糜胸患者,因此应合理选择手术方式,注意术中操作,降低乳糜胸发生率,提高肺癌患者术后的生活质量。  相似文献   
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目的:探讨手辅助腹腔镜手术(hand-assisted laparoscopic surgery,HALS)与全腹腔镜手术(laparoscopic surgery,LAP)用于直肠癌根治术患者的临床疗效及其对血清炎性因子水平的影响。方法:选取2013年3月~2018年3月在我院行直肠癌根治术的患者61例进行回顾性分析,按照手术方式不同分为手辅助腹腔镜手术组(HALS组)和全腹腔镜手术组(LAP组)。比较两组患者的手术相关指标、术后恢复指标和治疗前后血清炎性因子水平的变化。结果:HALS组的手术时间、术中出血量和副损伤显著低于LAP组(P0.05),两组中转开腹率相比无统计学差异(P0.05);两组患者术后肠功能恢复时间、进食时间、下床时间和住院时间比较均无显著性差异(P0.05);两组患者术后1 h和术后1 d血清白细胞介素-10(interleukin-10, IL-10)、C-反应蛋白(C reactive protein,CRP)和α肿瘤坏死因子(Tumor Necrosis Factor-α,TNF-α)水平均较术前显著升高,且HALS组显著低于LAP组(P0.05),术后1 w血清IL-10、CRP和TNF-α水平与术前相比无统计学差异(P0.05)。结论:HALS直肠癌根治术对患者的手术创伤小,炎性反应轻,且不影响患者的预后,利于患者的康复。  相似文献   
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目的:探究人髓细胞白血病基因-1(myeloid cell leukemia-1,Mcl-1)是否参与非小细胞肺癌对吉非替尼的耐药。方法:应用Western blot检测Mcl-1在吉非替尼敏感细胞PC-9和耐药细胞H1975表达差异;梯度浓度的吉非替尼作用于PC-9细胞后,Western blot实验检测B淋巴细胞瘤-2基因(B-cell lymphoma-2,Bcl-2)家族中抗凋亡蛋白的表达变化;应用Western blot实验检测Mcl-1在PC-9和H1975细胞内降解速度差异。结果:Mcl-1在PC-9细胞内的表达明显低于H1975细胞,差异有统计学意义(P0.05),并且随着吉非替尼作用浓度的升高,Mcl-1表达逐渐降低,而Bcl-2和Bcl-x L表达基本不变,并且PC-9细胞内Mcl-1降解更迅速,半衰期明显缩短。结论:非小细胞肺癌对吉非替尼耐药可能与Mcl-1的表达量上调,降解速度减慢,半衰期延长有关。  相似文献   
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目的:探究喜树碱-氟尿苷(CPT-FUDR)纳米颗粒对口腔鳞癌Tca-8113细胞增殖与迁移的影响。方法:制备喜树碱-氟尿苷纳米颗粒,通过丁达尔现象证明已组装完毕。将制备好的纳米颗粒组和喜树碱(CPT)单药组、氟尿苷(FUDR)单药组以及两种单药混合组(CPT/FUDR)作对比,采用MTT实验检测药物对口腔鳞癌细胞Tca-8113增殖的抑制作用,通过划痕实验探究CPT-FUDR纳米颗粒和CPT/FUDR混合药物对细胞迁移能力的影响。结果:MTT结果显示:在药物浓度大于0.1μM时,随着浓度的增加,四组细胞存活率均明显下降(P0.05),而CPT-FUDR纳米颗粒组Tca-8113细胞的存活率明显低于单药CPT、FUDR和CPT/FUDR混合物组(P0.05)。在划痕实验中,培养48 h后,CPT/FUDR混合物组和CPT-FUDR纳米颗粒组均显著低于空白组(P0.05),且CPT-FUDR纳米颗粒组显著低于CPT/FUDR混合物组(P0.05)。结论:在体外,CPT-FUDR纳米颗粒对口腔鳞癌Tca-8113细胞的增殖与迁移有较好的抑制作用,且抑制效果优于CPT/FUDR两种单药混合。  相似文献   
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目的:探讨miR-21对MARCKS基因表达的调控及其与乳腺癌MDA-MB-231细胞株多西紫杉醇耐药的关系。方法:通过基因芯片筛选到miR-21在亲代敏感细胞株(MDA-MB-231/S)与多西紫杉醇耐药细胞株(MDA-MB-231/Doc)中存在差异表达,应用实时荧光定量(RT-qPCR)方法验证此差异,同时分别检测MDA-MB-231/S细胞和MDA-MB-231/Doc细胞转染miR-21模拟物和抑制物后的表达变化;通过靶基因预测软件预测miR-21与MARCKS基因的关系;采用四甲基偶氮唑蓝(MTT)法、流式细胞术、RT-qPCR和蛋白质印迹法检测miR-21表达变化对三阴性乳腺癌细胞多西紫杉醇耐药性的影响,并探讨其与MARCKS基因表达的关系。结果:与MDA-MB-231/S相比,miR-21在MDA-MB-231/Doc中的表达水平明显升高(2.03±0.06)倍(P0.05)。与阴性对照组比,MDA-MB-231/S细胞转染miR-21 mimics后miR-21表达水平明显增高(2.26±0.07)倍(P0.05),而MARCKS基因在mRNA和蛋白水平上均明显下调。MDA-MB-231/Doc细胞转染miR-21 inhibitors后,miR-21表达水平是阴性对照组的(0.36±0.03)倍(P0.05),MARCKS基因的mRNA和蛋白水平高于其阴性对照组。转染miR-21 mimics后的MDA-MB-231/S细胞IC50显著高于其阴性对照组(P0.05),相反,与阴性对照组相比,MDA-MB-231/Doc细胞转染miR-21 inhibitors后,其IC50显著降低(P0.05)。MDA-MB-231/S转染miR-21 mimics后,miR-21表达量明显上调,MARCKS基因分别是阴性对照组的(3.564±0.336)倍和(2.019±0.268)倍(P0.05)。结论:miR-21可能通过靶向调节MARCKS基因增强乳腺癌细胞对多西紫杉醇的耐药性。  相似文献   
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