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911.
912.
目的:探讨胃癌组织长链非编码RNA(lncRNA)DHHC型锌指蛋白8假基因1(ZDHHC8P1)、母系表达基因3(MEG3)、牛磺酸上调基因1(TUG1)表达与临床病理特征和预后的关系。方法:选取2013年1月至2016年1月我院病理科收集的83例胃癌患者经手术切除或胃镜活检的癌组织及癌旁组织石蜡标本,检测胃癌和癌旁组织中ZDHHC8P1、MEG3、TUG1表达。分析ZDHHC8P1、MEG3、TUG1表达与胃癌临床病理特征的关系。随访所有患者,分析ZDHHC8P1、MEG3、TUG1表达与患者预后的关系。结果:胃癌组织中ZDHHC8P1、TUG1表达量均高于癌旁组织(P0.05),MEG3表达量低于癌旁组织(P0.05)。ZDHHC8P1表达与肿瘤直径、分化程度、浸润深度、TNM分期、淋巴结转移、远处转移有关(P0.05),MEG3、TUG1表达与分化程度、浸润深度、淋巴结转移有关(P0.05)。Kaplan-Meier生存曲线分析结果显示ZDHHC8P1、TUG1高表达患者无疾病进展生存(PFS)率、总生存(OS)率低于ZDHHC8P1、TUG1低表达患者(P0.05),MEG3低表达患者PFS、OS率低于MEG3高表达患者(P0.05)。Cox风险回归分析结果显示淋巴结转移、ZDHHC8P1高表达、TUG1高表达、MEG3低表达是胃癌患者不良预后的危险因素(HR=1.613、1.956、2.512、-0.824,P0.05)。结论:胃癌组织中ZDHHC8P1、TUG1呈高表达,MEG3呈低表达,ZDHHC8P1、TUG1、MEG3表达均与胃癌临床病理特征和预后有关,可作为胃癌患者预后评估的辅助指标。 相似文献
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The potential of reef‐building corals to adapt to increasing sea‐surface temperatures is often debated but has rarely been comprehensively modeled on a region‐wide scale. We used individual‐based simulations to model adaptation to warming in a coral metapopulation comprising 680 reefs and representing the whole of the Central Indo‐West Pacific. Encouragingly, some reefs—most notably Vietnam, Japan, Taiwan, New Caledonia and the southern half of the Great Barrier Reef—exhibited high capacity for adaptation and, in our model, maintained coral cover even under a rapid “business‐as‐usual” warming scenario throughout the modeled period (200 years). Higher resilience of these reefs was observed under all tested parameter settings except the models prohibiting selection and/or migration during warming. At the same time, the majority of reefs in the region tended to collapse within the first 100 years of warming. The adaptive potential (odds of maintaining high coral cover) of a given reef could be predicted based on two metrics: the reef's present‐day temperature, and the proportion of recruits immigrating from warmer locations. The latter metric explains the most variation in adaptive potential, and significantly correlates with actual coral cover changes observed throughout the region between the 1970s and the early 2000s. These findings will help prioritize coral conservation efforts and plan assisted gene flow interventions to boost the adaptive potential of specific coral populations. 相似文献
916.
Karashdeep Kaur 《Biomarkers》2020,25(6):498-505
Abstract Pesticide-induced DNA damage is primarily repaired by base excision repair (BER) pathway. However, polymorphism in DNA repair genes may modulate individual’s DNA repair capacity (DRC) leading to increased genotoxicity and adverse health effects. Our first study in North-West Indian population aimed to evaluate the impact of OGG1 rs1052133 (Ser326Cys; C1245G), XRCC1 rs1799782 (Arg194Trp; C26304T) and XRCC1 rs25487 (Arg399Gln; G28152A) polymorphisms on the modulation of pesticide-induced DNA damage in a total of 450 subjects (225 pesticide-exposed agricultural workers and 225 age- and sex-matched controls). DNA damage was estimated by alkaline comet assay using silver-staining method. Genotyping was carried out by PCR-RFLP using site-specific restriction enzymes. Mann-Whitney U-test revealed elevation in DNA damage parameters (p?<?0.01) in pesticide-exposed agricultural workers than controls. Chi-square test showed significant (p?<?0.05) differences in the XRCC1 Arg194Trp (C26304T) and Arg399Gln (G28152A) genotypes among two groups. Multivariate logistic-regression analysis revealed that heterozygous genotypes of OGG1 rs1052133 (326Ser/Cys; 1245CA), XRCC1 rs1799782 (194Arg/Trp; 26304CT) and XRCC1 rs25487 (399Arg/Gln; 2815GA) were positively associated (p?<?0.05) with elevated DNA damage parameters in pesticide-exposed agricultural workers. Our results strongly indicate significant positive association of variant OGG1 and XRCC1 genotypes with reduced DRC and higher pesticide-induced DNA damage in North-West Indian agricultural workers. 相似文献
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Amina‐Zahra Mouhoumed Ya‐Ni Mou Sen‐Miao Tong Sheng‐Hua Ying Ming‐Guang Feng 《Cellular microbiology》2020,22(10)
FK506‐sensitive proline rotamases (FPRs), also known as FK506‐binding proteins (FKBPs), can mediate immunosuppressive drug resistance in budding yeast but their physiological roles in filamentous fungi remain opaque. Here, we report that three FPRs (cytosolic/nuclear 12.15‐kD Fpr1, membrane‐associated 14.78‐kD Fpr2 and nuclear 50.43‐kD Fpr3) are all equally essential for cellular Ca2+ homeostasis and contribute significantly to calcineurin activity at different levels in the insect‐pathogenic fungus Beauveria bassiana although the deletion of fpr1 alone conferred resistance to FK506. Radial growth, conidiation, conidial viability and virulence were less compromised in the absence of fpr1 or fpr2 than in the absence of fpr3, which abolished almost all growth on scant media and reduced growth moderately on rich media. The Δfpr3 mutant was more sensitive to Na+, K+, Mn2+, Ca2+, Cu2+, metal chelate, heat shock and UVB irradiation than was Δfpr2 while both mutants were equally sensitive to Zn2+, Mg2+, Fe2+, H2O2 and cell wall‐perturbing agents. In contrast, the Δfpr1 mutant was less sensitive to fewer stress cues. Most of 32 examined genes involved in DNA damage repair, Na+/K+ detoxification or osmotolerance and Ca2+ homeostasis were downregulated sharply in Δfpr2 and Δfpr3 but rarely so affected in Δfpr1, coinciding well with their phenotypic changes. These findings uncover important, but differential, roles of three FPRs in the fungal adaptation to insect host and environment and provide novel insight into their essential roles in calcium signalling pathway. 相似文献
920.
Mutations in MIR396e and MIR396f increase grain size and modulate shoot architecture in rice 总被引:1,自引:0,他引:1
Chunbo Miao Dong Wang Reqing He Shenkui Liu Jian‐Kang Zhu 《Plant biotechnology journal》2020,18(2):491-501
Grain size and plant architecture are critical factors determining crop productivity. Here, we performed gene editing of the MIR396 gene family in rice and found that MIR396e and MIR396f are two important regulators of grain size and plant architecture. mir396ef mutations can increase grain yield by increasing grain size. In addition, mir396ef mutations resulted in an altered plant architecture, with lengthened leaves but shortened internodes, especially the uppermost internode. Our research suggests that mir396ef mutations promote leaf elongation by increasing the level of a gibberellin (GA) precursor, mevalonic acid, which subsequently promotes GA biosynthesis. However, internode elongation in mir396ef mutants appears to be suppressed via reduced CYP96B4 expression but not via the GA pathway. This research provides candidate gene‐editing targets to breed elite rice varieties. 相似文献