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941.
N. Lucarini G. Finocchi F. Gloria-Bottini M. Macioce P. Borgiani A. Amante E. Bottini 《Cellular and molecular life sciences : CMLS》1990,46(1):90-91
Summary Phenotypes of acid phosphatase with low enzymatic activity (ACP1 A and BA) are correlated with the highest degree of body mass increase observed in a sample of obese children. Since acid phosphatase probably functions as a flavin-mononucleotide phosphatase, differential modulation of flavo-enzyme activity and energy metabolism due to acid phosphatase genetic variability may explain the observed association. 相似文献
942.
Morphological transformation of human keratinocytes expressing the LMP gene of Epstein-Barr virus. 总被引:40,自引:0,他引:40
The association of Epstein-Barr virus (EBV) with nasopharyngeal carcinoma (NPC) has been known for some time, but the precise role of EBV in this cancer is poorly understood, due partly to the lack of an in vitro system for studying NPC cells and the effect of EBV on epithelial cells. Biopsies of NPC tumours have revealed expression of the EBV latent membrane protein (LMP) in 65% of cases, suggesting that in at least some NPC tumours LMP may contribute to cell transformation. Here we address the question of the effect of LMP expression on epithelial cells. Transfection of an immortalized, non-tumorigenic keratinocyte cell line (RHEK-1) with the LMP gene causes a striking morphological transformation: the originally flat, polygonal colonies change to bundles of spindle-shaped cells that form multilayer foci, and cytokeratin expression is down-regulated. Our results suggest that LMP expression may be an important causal factor in the development of NPC. 相似文献
943.
G S Jimenez F Bryntesson M I Torres-Arzayus A Priestley M Beeche S Saito K Sakaguchi E Appella P A Jeggo G E Taccioli G M Wahl M Hubank 《Nature》1999,400(6739):81-83
Damage to DNA in the cell activates the tumour-suppressor protein p53, and failure of this activation leads to genetic instability and a predisposition to cancer. It is therefore crucial to understand the signal transduction mechanisms that connect DNA damage with p53 activation. The enzyme known as DNA-dependent protein kinase (DNA-PK) has been proposed to be an essential activator of p53, but the evidence for its involvement in this pathway is controversial. We now show that the p53 response is fully functional in primary mouse embryonic fibroblasts lacking DNA-PK: irradiation-induced DNA damage in these defective fibroblasts induces a normal response of p53 accumulation, phosphorylation of a p53 serine residue at position 15, nuclear localization and binding to DNA of p53. The upregulation of p53-target genes and cell-cycle arrest also occur normally. The DNA-PK-deficient cell line SCGR11 contains a homozygous mutation in the DNA-binding domain of p53, which may explain the defective response by p53 reported in this line. Our results indicate that DNA-PK activity is not required for cells to mount a p53-dependent response to DNA damage. 相似文献
944.
A family of mammalian Na+-dependent L-ascorbic acid transporters. 总被引:10,自引:0,他引:10
H Tsukaguchi T Tokui B Mackenzie U V Berger X Z Chen Y Wang R F Brubaker M A Hediger 《Nature》1999,399(6731):70-75
Vitamin C (L-ascorbic acid) is essential for many enzymatic reactions, in which it serves to maintain prosthetic metal ions in their reduced forms (for example, Fe2+, Cu+), and for scavenging free radicals in order to protect tissues from oxidative damage. The facilitative sugar transporters of the GLUT type can transport the oxidized form of the vitamin, dehydroascorbic acid, but these transporters are unlikely to allow significant physiological amounts of vitamin C to be taken up in the presence of normal glucose concentrations, because the vitamin is present in plasma essentially only in its reduced form. Here we describe the isolation of two L-ascorbic acid transporters, SVCT1 and SVCT2, from rat complementary DNA libraries, as the first step in investigating the importance of L-ascorbic acid transport in regulating the supply and metabolism of vitamin C. We find that SVCT1 and SVCT2 each mediate concentrative, high-affinity L-ascorbic acid transport that is stereospecific and is driven by the Na+ electrochemical gradient. Despite their close sequence homology and similar functions, the two isoforms of the transporter are discretely distributed: SVCT1 is mainly confined to epithelial systems (intestine, kidney, liver), whereas SVCT2 serves a host of metabolically active cells and specialized tissues in the brain, eye and other organs. 相似文献
945.
介绍一种对航天器的VLBI原始电压观测记录中提取多普勒频移量的方法,并用于对lunarprospector的较左VLBI观测记录的分析中,同时得到航天器的VLBI和多普勒观测数据,有利于对航天器空间位置和速度信息的同时获取。 相似文献
946.
G.F.HannePhysikalisches Institut der Universitat Münster Wilhelm Klemm Str. Münster Germany 《清华大学学报》2000,5(4)
IntroductionThedynamicsofelectron-atomandelectron-moleculecollisionshasbeenthefocusofmuchinterestinthepastbecauseofitsrelevanceingasdischargesandplasmas,includinggaslasers,orastrophysicalproblemsofpracticalinterest.Avarietyofinvestigationshavebeenperformedtostudysuchprocessesinsomedetail.Moresophisticatedexperimentalmethodsincludepolarization-correlationmeasurementstoobtaingeneralizedSTUparameters,spinasymmetrieswithpolarizedtargets(alsosuperelasticscatteringfromlaserexcitedtarget),opticalpar… 相似文献
947.
An unusually large multifunctional polypeptide in the erythromycin-producing polyketide synthase of Saccharopolyspora erythraea 总被引:30,自引:0,他引:30
Erythromycin A, a clinically important polyketide antibiotic, is produced by the Gram-positive bacterium Saccharopolyspora erythraea. In an arrangement that seems to be generally true of antibiotic biosynthetic genes in Streptomyces and related bacteria like S. erythraea, the ery genes encoding the biosynthetic pathway to erythromycin are clustered around the gene (ermE) that confers self-resistance on S. erythraea. The aglycone core of erythromycin A is derived from one propionyl-CoA and six methylmalonyl-CoA units, which are incorporated head-to-tail into the growing polyketide chain, in a process similar to that of fatty-acid biosynthesis, to generate a macrolide intermediate, 6-deoxyerythronolide B. 6-Deoxyerythronolide B is converted into erythromycin A through the action of specific hydroxylases, glycosyltransferases and a methyltransferase. We report here the analysis of about 10 kilobases of DNA from S. erythraea, cloned by chromosome 'walking' outwards from the erythromycin-resistance determinant ermE, and previously shown to be essential for erythromycin biosynthesis. Partial sequencing of this region indicates that it encodes the synthase. Our results confirm this, and reveal a novel organization of the erythromycin-producing polyketide synthase, which provides further insight into the mechanism of chain assembly. 相似文献
948.
P S Ohashi T W Mak P Van den Elsen Y Yanagi Y Yoshikai A F Calman C Terhorst J D Stobo A Weiss 《Nature》1985,316(6029):606-609
949.
I. Kubo T. Matsumoto F. J. Hanke M. Taniguchi Y. Hayashi 《Cellular and molecular life sciences : CMLS》1985,41(11):1462-1463
Summary A possible new role for the flavonoid (–)-epicatechin (II) is described. It has no growth effects on its own, but when it is added to lettuce and rice seeds together with the known seedling growth inhibitor nagilactone E (I), the growth inhibitor activity ofI can cease and growth stimulation can be observed. 相似文献
950.