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Träfflista för sökning "L773:0006 291X srt2:(2005-2009)"

Search: L773:0006 291X > (2005-2009)

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1.
  • Aboulaich, Nabila, et al. (author)
  • Association and insulin regulated translocation of hormone-sensitive lipase with PTRF
  • 2006
  • In: Biochemical and Biophysical Research Communications - BBRC. - : Elsevier BV. - 0006-291X .- 1090-2104. ; 350:3, s. 657-661
  • Journal article (peer-reviewed)abstract
    • Polymerase I and transcript release factor (PTRF) is in human adipocytes mainly localized at the plasma membrane. This localization was under control of insulin, which translocated PTRF to the cytosol and nucleus, indicating a novel role for PTRF in insulin transcriptional control. In the plasma membrane PTRF was specifically bound to a triacylglycerol-metabolizing subclass of caveolae containing hormone-sensitive lipase (HSL). In response to insulin PTRF was translocated to the cytosol in parallel with HSL. PTRF and HSL were quantitatively immunoprecipitated from the cytosol by antibodies against either PTRF or HSL. The findings indicate also a novel extranuclear function for PTRF in the control of lipolysis.
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  • Ahlzén, Maja, et al. (author)
  • Expression of the transcription factor 7-like 2 gene (TCF7L2) in human adipocytes is down regulated by insulin.
  • 2008
  • In: Biochemical and Biophysical Research Communications. - : Elsevier BV. - 1090-2104 .- 0006-291X. ; 370, s. 49-52
  • Journal article (peer-reviewed)abstract
    • Variants in the TCF7L2 gene (transcription factor 7-like 2) have shown strong association with type 2 diabetes with two defined risk haplotypes, HapA and HapB(T2D). TCF7L2 may play a role in both glucose homeostasis and adipogenesis. Our aim was to characterize the TCF7L2 mRNA expression and regulation in human adipose tissue. We quantified TCF7L2 mRNA levels in cultured human adipocytes and in biopsies from visceral (VAT) and subcutaneous (SAT) adipose tissue from 38 obese non-diabetic subjects, using real-time PCR. The influence of haplotype and clinical traits on TCF7L2 mRNA levels were investigated. In vitro, insulin decreased TCF7L2 mRNA expression. This effect was attenuated in cells incubated with the free fatty acids palmitate or oleate. In vivo, we found significantly higher expression in SAT from more insulin resistant subjects. No correlations between TCF7L2 mRNA expression and obesity measures were observed. TCF7L2 expression was higher in VAT than in SAT and when stratifying for haplotype, this difference was seen in HapA carriers but not in non-HapA carriers. In conclusion, TCF7L2 mRNA levels in adipocytes are decreased by insulin and seem to increase in insulin resistant subjects and in HapA carriers.
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5.
  • Aifa, Sami, et al. (author)
  • Phosphorylation of Thr654 but not Thr669 within the juxtamembrane domain of the EGF receptor inhibits calmodulin binding
  • 2006
  • In: Biochemical and Biophysical Research Communications - BBRC. - : Elsevier BV. - 0006-291X .- 1090-2104. ; 347:2, s. 381-387
  • Journal article (peer-reviewed)abstract
    • Calcium-calmodulin (CaM) binding to the epidermal growth factor receptor (EGFR) has been shown to both inhibit and stimulate receptor activity. CaM binds to the intracellular juxtamembrane (JM) domain (Met645-Phe688) of EGFR. Protein kinase C (PKC) mediated phosphorylation of Thr654 occurs within this domain. CaM binding to the JM domain inhibits PKC phosphorylation and conversely PKC mediated phosphorylation of Thr654 or Glu substitution of Thr654 inhibits CaM binding. A second threonine residue (Thr669) within the JM domain is phosphorylated by the mitogen-activated protein kinase (MAPK). Previous results have shown that CaM interferes with EGFR-induced MAPK activation. If and how phosphorylation of Thr669 affects CaM-EGFR interaction is however not known.In the present study we have used surface plasmon resonance (BIAcore) to study the influence of Thr669 phosphorylation on real time interactions between the intracellular juxtamembrane (JM) domain of EGFR and CaM. The EGFR-JM was expressed as GST fusion proteins in Escherichia coli and phosphorylation was mimicked by generating Glu substitutions of either Thr654 or Thr669. Purified proteins were coupled to immobilized anti-GST antibodies at the sensor surface and increasing concentration of CaM was applied. When mutating Thr654 to Glu654 no specific CaM binding could be detected. However, neither single substitutions of Thr669 (Gly669 or Glu669) nor double mutants Gly654/Gly669 or Gly654/Glu669 influenced the binding of CaM to the EGFR-JM. This clearly shows that PKC may regulate EGF-mediated CaM signalling through phosphorylation of Thr654 whereas phosphorylation of Thr669 seems to play a CaM independent regulatory role. The role of both residues in the EGFR-calmodulin interaction was also studied in silico. Our modelling work supports a scenario where Thr654 from the JM domain interacts with Glu120 in the calmodulin molecule. Phosphorylation of Thr654 or Glu654 substitution creates a repulsive electrostatic force that would diminish CaM binding to the JM domain. These results are in line with the Biacore experiments showing a weak binding of the CaM to the JM domain with Thr654 mutated to Glu. Furthermore, these results provide a hypothesis to how CaM binding to EGFR might both positively and negatively interfere with EGFR-activity. © 2006 Elsevier Inc. All rights reserved.
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6.
  • Andersson, Niklas, 1970, et al. (author)
  • A gene expression fingerprint of mouse stomach ECL cells.
  • 2005
  • In: Biochemical and biophysical research communications. - : Elsevier BV. - 0006-291X .- 1090-2104. ; 332:2, s. 404-10
  • Journal article (peer-reviewed)abstract
    • Many of the endocrine cells in the stomach are poorly characterized with respect to physiological significance. In some cases, the anticipated hormone has not yet been identified. Global gene expression analysis of mouse stomach was performed in an attempt to identify the ECL-cell peptide/protein. Specific functional activation (omeprazole-induced hypergastrinaemia) was used as a tool to generate a gene expression fingerprint of the ECL cells. The proposed fingerprint includes 14 genes, among them six are known to be expressed by ECL cells (=positive controls), and some novel ones, which are likely to be ECL-cell-related. The known ECL-cell-related genes are those encoding histidine decarboxylase, chromogranin A and B, vesicular monoamine transporter 2, synaptophysin, and the cholecystokinin-B receptor. In addition, the fingerprint included five genes, which might be involved in the process of secretion and three ESTs with unknown function. Interestingly, parathyroid hormone-like hormone (Pthlh) was identified as a candidate ECL-cell peptide hormone.
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  • Result 1-10 of 268
Type of publication
journal article (267)
research review (1)
Type of content
peer-reviewed (261)
other academic/artistic (6)
pop. science, debate, etc. (1)
Author/Editor
Winblad, B (5)
Bjorkhem, I (5)
Einarsson, C (5)
Angelin, B (4)
Ingelman-Sundberg, M (4)
Nilsson, LM (4)
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Schiöth, Helgi B. (4)
Chen, C. (3)
Lindholm, Dan (3)
Berggren, PO (3)
Eriksson, M (3)
Strålfors, Peter (3)
Ohlsson, Claes, 1965 (3)
Söderström, Mats (3)
Wang, J. (2)
Zhang, F. (2)
Zhang, X. (2)
Nilsson, J. (2)
Lilja, Hans (2)
Korhonen, Laura (2)
Larsson, O (2)
Salehi, S Albert (2)
Efendic, S (2)
Ahren, Bo (2)
Langel, Ülo (2)
Swenson, Jan, 1966 (2)
Jennische, Eva, 1949 (2)
Degerman, Eva (2)
Lundwall, Åke (2)
Abrahamsson, A (2)
Gustafsson, U (2)
Eggertsen, G (2)
Ellis, E (2)
Sahlin, S (2)
Gafvels, M (2)
Fernlund, Per (2)
Hellman, Ulf (2)
Dantuma, NP (2)
Murphy, C (2)
Nyberg, Fred (2)
Sylven, C (2)
BOGDANOVIC, N (2)
Omerovic, Elmir, 196 ... (2)
Svanborg, Catharina (2)
Bülow, Leif (2)
Holback, Sofia (2)
Iverfeldt, Kerstin (2)
Lewensohn, R. (2)
Bazan, NG (2)
Rodriguez-Antona, C (2)
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University
Karolinska Institutet (125)
Uppsala University (62)
Lund University (48)
Linköping University (22)
University of Gothenburg (21)
Umeå University (19)
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Stockholm University (11)
Södertörn University (5)
Chalmers University of Technology (5)
Royal Institute of Technology (3)
University of Gävle (2)
Örebro University (2)
Malmö University (1)
Swedish University of Agricultural Sciences (1)
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Language
English (266)
Undefined language (2)
Research subject (UKÄ/SCB)
Natural sciences (62)
Medical and Health Sciences (26)
Engineering and Technology (3)

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