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991.
A cDNA (SsCAX1) encoding a tonoplast-localised Ca2+/H+ exchanger was isolated from a C3 halophyte Suaeda salsa (L.). To clarify the role of SsCAX1 in plant salt tolerance, Arabidopsis plants expressing SsCAX1 were treated with NaCl. Transgenic Arabidopsis plants displayed decreased salt tolerance. Although Na+ content was close to wild-type plants, transgenic plants accumulated more Ca2+ and retained less K+ in leaves than the wild-type plants in salinity. Furthermore, transgenic lines held higher leaf membrane leakage than wild-type lines under NaCl treatment. In addition, transgenic plants showed a 23% increase in vacuolar H+-ATPase activity compared with wild-type plants in normal condition. But the leaf V-H+-ATPase activity had subtle changes in transgenic plants, while significantly increased in wild-type plants under saline condition. These results suggested that regulated expression of Ca2+/H+ antiport was critical for maintenance of cation homeostasis and activity of V-H+-ATPase under saline condition.  相似文献   
992.
993.
Ribonucleotide reductases (RRs) catalyze the rate-limiting step of de novo deoxynucleotide (dNTP) synthesis. Eukaryotic RRs consist of two proteins, RR1 (α) that contains the catalytic site and RR2 (β) that houses a diferric-tyrosyl radical essential for ribonucleoside diphosphate reduction. Biochemical analysis has been combined with isothermal titration calorimetry (ITC), X-ray crystallography and yeast genetics to elucidate the roles of two loop 2 mutations R293A and Q288A in Saccharomyces cerevisiae RR1 (ScRR1). These mutations, R293A and Q288A, cause lethality and severe S phase defects, respectively, in cells that use ScRR1 as the sole source of RR1 activity. Compared to the wild-type enzyme activity, R293A and Q288A mutants show 4% and 15%, respectively, for ADP reduction, whereas they are 20% and 23%, respectively, for CDP reduction. ITC data showed that R293A ScRR1 is unable to bind ADP and binds CDP with 2-fold lower affinity compared to wild-type ScRR1. With the Q288A ScRR1 mutant, there is a 6-fold loss of affinity for ADP binding and a 2-fold loss of affinity for CDP compared to the wild type. X-ray structures of R293A ScRR1 complexed with dGTP and AMPPNP-CDP [AMPPNP, adenosine 5-(β,γ-imido)triphosphate tetralithium salt] reveal that ADP is not bound at the catalytic site, and CDP binds farther from the catalytic site compared to wild type. Our in vivo functional analyses demonstrated that R293A cannot support mitotic growth, whereas Q288A can, albeit with a severe S phase defect. Taken together, our structure, activity, ITC and in vivo data reveal that the arginine 293 and glutamine 288 residues of ScRR1 are crucial in facilitating ADP and CDP substrate selection.  相似文献   
994.
995.
Zhang L  Hou D  Chen X  Li D  Zhu L  Zhang Y  Li J  Bian Z  Liang X  Cai X  Yin Y  Wang C  Zhang T  Zhu D  Zhang D  Xu J  Chen Q  Ba Y  Liu J  Wang Q  Chen J  Wang J  Wang M  Zhang Q  Zhang J  Zen K  Zhang CY 《Cell research》2012,22(1):107-126
Our previous studies have demonstrated that stable microRNAs (miRNAs) in mammalian serum and plasma are actively secreted from tissues and cells and can serve as a novel class of biomarkers for diseases, and act as signaling molecules in intercellular communication. Here, we report the surprising finding that exogenous plant miRNAs are present in the sera and tissues of various animals and that these exogenous plant miRNAs are primarily acquired orally, through food intake. MIR168a is abundant in rice and is one of the most highly enriched exogenous plant miRNAs in the sera of Chinese subjects. Functional studies in vitro and in vivo demonstrated that MIR168a could bind to the human/mouse low-density lipoprotein receptor adapter protein 1 (LDLRAP1) mRNA, inhibit LDLRAP1 expression in liver, and consequently decrease LDL removal from mouse plasma. These findings demonstrate that exogenous plant miRNAs in food can regulate the expression of target genes in mammals.  相似文献   
996.
目的 探讨胎盘部位结节(PSN)和胎盘部位过度反应(EPS)的临床病理特征.方法 结合临床表现、形态学特征、发病机制和免疫表型,对3例PSN及4例EPS病例进行分析,并对鉴别诊断、治疗和预后的情况进行分析.结果 PSN和EPS临床表现为末次妊娠后阴道不规则流血、产后大出血或妊娠合并子宫不全破裂等.镜下见PSN由圆形到卵圆形的中间型滋养细胞结节组成,并伴致密玻璃样变间质.EPS绒毛附着的蜕膜区及其下浅肌层中见单核的多边形或梭形中间型滋养细胞浸润细胞呈片块状或条索状穿插于子宫肌层平滑肌束间.免疫表型PSN和EPS示广谱CK(AE1/AE3)均强阳性,但PSN中PLAP、P63、a-inhibin也呈强阳性,而EPS中hPL强阳性;两者hCG、CEA均局灶阳性或阴性,SMA、vimentin阴性,Ki-67指数均小于5%.治疗手段以刮宫及全子宫切除术,预后较好.结论 PSN和EPS是罕见的中间型滋养细胞(IT)良性病变,二者具有不同的形态学特征和免疫表型,但临床表现及治疗方式比较相似,且预后较好.  相似文献   
997.
目的 了解新生儿病区产ESBLs大肠埃希菌整合子的携带情况及其耐药性.方法 采用K-B琼脂扩散法对56株产ESBLs大肠埃希菌进行药敏试验;应用PCR法检测Ⅰ类、Ⅱ类和Ⅲ类整合子;以肠杆菌科重复序列-聚合酶链式反应(ERIC-PCR)进行基因分型.结果 56株产ESBLs大肠埃希菌的Ⅰ类整合子检出率为60.7%,未检出Ⅱ类和Ⅲ类整合子;菌株对庆大霉素、环丙沙星、左氧氟沙星、复方新诺明、头孢唑林、氨曲南、头孢他啶的耐药率差异有统计学意义(P<0.05),阳性菌株的耐药率高于阴性菌株;56株大肠埃希菌分为45种基因型.结论 Ⅰ类整合子广泛存在于新生儿病区产ESBLs大肠埃希菌并与其耐药性相关.  相似文献   
998.
Ⅲ型分泌系统(type Ⅲ secretion system, TTSS)是铜绿假单胞菌的重要致病因子.分析临床菌株中TTSS的表达水平,对于研究铜绿假单胞菌的致病机制具有重要意义.本研究通过测定融合报告基因exsA-lacZ和exoT-lacZ编码的β-半乳糖苷酶活力,分析了150株铜绿假单胞菌临床菌株exsA和exoT基因的表达水平,发现71株(47.33%)细菌exsA基因的表达为阳性,65株(43.33%)细菌exoT基因的表达为阳性,基因exsA与exoT表达水平存在正相关(P <0.001),且不同菌株间两者表达水平差异较大.采用统计学方法对实验结果进一步分析发现,TTSS表达与呼吸道感染等临床症状相关(P <0.05);与标本的分离时间相关(P =0.029);与菌株亚胺青霉烯耐药性存在负相关(P <0.05).本研究结果显示,铜绿假单胞菌临床菌株TTSS表达水平差异较大,与多种因素存在相关性.  相似文献   
999.
探讨肝癌模型鼠与正常小鼠肝组织B4GalT(β-1,4-半乳糖转移酶)家族mRNA表达差异以及对细胞膜相关糖链的影响.采用RT-PCR方法检测肝癌模型鼠和正常对照小鼠肝癌组织中B4GalT家族7个成员以及唾液酸α-2,3转移酶ST3GalⅢ、ST3GalⅣ、ST3GalⅥ、α-1,6-岩藻糖转移酶FUT8 mRNA表达差异,应用凝集素芯片检测细胞膜表面半乳糖、岩藻糖、唾液酸表达情况.结果显示:与正常对照组相比,肝癌模型鼠肝组织中B4GalT-1和B4GalT-3、ST3GalⅣ和ST3GalⅥ、FUT8呈现高表达,肝癌细胞膜半乳糖、岩藻糖、唾液酸类型糖链增加,提示B4GalT-1和B4GalT-3与肝癌细胞膜半乳糖链增加相关.由于细胞Galβ-1,4-GlcNAc糖表位在ST3GalⅢ、ST3GalⅣ或ST3GalⅥ催化下与唾液酸α-2,3连接生成s-lewis x抗原前体,本实验中B4GalT-1和B4GalT-3与ST3GalⅣ、ST3GalⅤ、FUT8 mRNA表达具有相关性,提示B4GalT-1和B4GalT-3可能与ST3GalⅣ、ST3GalⅥ以及FUT4协同作用,导致肝癌细胞膜半乳糖、岩藻糖、唾液酸类型糖链增加.  相似文献   
1000.
In this study, we explored the pathogenic mechanism of white spot syndrome virus (WSSV) in crayfish, Cherax quadricarinatus, by investigating activities of enzymes related to innate immune function during infection. After 6-12 h of exposure to WSSV, the activities of four enzymes, phenoloxidase (PO), peroxidase (POD), superoxide dismutase (SOD) and lysozyme (LSZ), increased in the gills of C. quadricarinatus but then sharply decreased during longer infection times. Except for PO, the activities of other enzymes in the WSSV-infected crayfish (Group II) were significantly lower than those of the controls at 72 h post-exposure (P < 0.01). Interestingly, the enzyme activities in the group treated with polysaccharides before challenge with WSSV (Group III) were higher than those in Group II. This phenomenon demonstrated that the polysaccharides could improve the immuno-enzyme activities and enhance the organism's antiviral defenses. Morphological examination by transmission electron microscopy revealed abundant WSSV particles and significant damage in the gills of infected crayfish. WSSV infection caused parts of the gill epithelium and microvilli to be reduced in number and size or damaged; meanwhile, the mitochondria morphology changed, with parts of the cristae diminished leaving large vacuoles. Moreover, electron dense deposits appeared and heterochromatinized nuclei could be seen in blood cells with ruptured nuclear membranes and outflow of nucleoplasm. The findings of this study furthers our understanding of the biochemical alterations induced by viral infections, including changes in the antioxidant status, oxidative stress and lysozyme activity, which could help to advance strategies for control of WSSV in crayfish.  相似文献   
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