Zum Hauptinhalt springen

Suchergebnisse

UB Katalog
Ermittle Trefferzahl…

Artikel & mehr
27 Treffer

Suchmaske

Suchtipp für den Bereich Artikel & mehr: Wörter werden automatisch mit UND verknüpft. Eine ODER-Verknüpfung erreicht man mit dem Zeichen "|", eine NICHT-Verknüpfung mit einem "-" (Minus) vor einem Wort. Anführungszeichen ermöglichen eine Phrasensuche.
Beispiele: (burg | schloss) -mittelalter, "berufliche bildung"

Das folgende Suchfeld wird hier nicht unterstützt: "Signatur / Strichcode".

Suchergebnisse einschränken oder erweitern

Erscheinungszeitraum

Mehr Treffer

Weniger Treffer

Gefunden in

Art der Quelle

Schlagwort

Verlag

Publikation

27 Treffer

Sortierung: 
  1. Rajagopal, Keshava ; Sommers, Connie L ; et al.
    In: Journal of Experimental Medicine, vol 190, iss 11, 1999
    academicJournal
  2. Figure 5—figure supplement 1. A glucocorticoid-driven network links many of the top-ranked PLSR genes. ; Twelve of the top-25 ranked genes in the PLSR onesample and PLSR two-sample differential models (indicated by a red asterisk) are linked in a network that is driven by glucocorticoid signaling. Glucocorticoid (GC) acting via glucocorticoid receptors (GR) has been shown to stimulate the expression of thousands of genes in human peripheral blood (Menke et al., 2012). GR is inactive when it is bound by a group of chaperone molecules that includes FKBP5 (Park et al., 2007). Active GR binds to GC response elements (GRE) in the promoters and induces the expression of GC-regulated genes, which include peripheral circadian clock genes such as PER1 and PER2 (Cuesta et al., 2015; So et al., 2009; Leliavski et al., 2015), but also in many other genes such as FKBP5 (Park et al., 2007). GR can also induce the rhythmic expression of NR1D2 (So et al., 2009). GC induces the expression of the phosphatase DUSP1 (Shah et al., 2014), which supresses the inflammatory response by inhibiting MAP kinases (Abraham and Clark, 2006). GC down-regulates the expression of the tyrosine kinase TXK, which regulates T-cell development (Petrillo et al., 2014). GR increases the activity of CEBPB (Berg et al., 2005), which is a transcription factor whose expression is increased during macrophage differentiation and mediates the expression of inflammatory mediators including CLEC4E (Akagi et al., 2010). GC reduces the expression of the metalloproteinase ADAMTS1 that regulates extracellular matrix function (Wong et al., 2016). GC inhibits WNT signaling (Naito et al., 2015). DAAM2 binds to and stabilizes DVL enhancing WNT signaling during cell development (Lee and Deneen, 2012). The MTOR signaling pathway senses nutrient stress and interacts with components of the WNT signaling pathway (Inoki et al., 2006). DDIT4 is a repressor of MTOR (Gordon et al., 2015) and is transcriptionally up-regulated by GC in response to stress and fasting (Polman et al., 2012; McGhee et al., 2009). FLT3 is a tyrosine kinase that binds to GR and potentiates its signaling (Asadi et al., 2008). FLT3 also regulates dendritic cell development by activating mTOR signaling (Chen et al., 2010). ZBTB16 is a transcriptional repressor that is enhanced by GC and regulates GC response genes and affects GC-induced apoptosis (Wasim et al., 2010, 2012).
    2017
    unknown
  3. Ortutay, Csaba ; Nore, Beston F. ; et al.
    In: Advances in Genetics ; page 51-80 ; ISSN 0065-2660; (2008)
    Buch
  4. Czar, M. J. ; Debnath, J. ; et al.
    In: Biochemical Society Transactions ; volume 29, issue 6, page 863 ; ISSN 0300-5127, 2001
    academicJournal
  5. Schaeffer, Edward M ; Broussard, Christine ; et al.
    In: Journal of Experimental Medicine, vol 192, iss 7, 2000
    academicJournal
  6. Laederach, Alain ; Cradic, Kendall W ; et al.
    2003
    unknown
  7. Teoky, foØe
    In: Journal of Research & Development' 14(21) 13-16, 2022
    academicJournal
  8. Bruna Cardoso Jacintho ; Bruna de Moraes Mazetto Fonseca ; et al.
    2023
    unknown
  9. Ventham, NT ; Kennedy, NA ; et al.
    2018
    academicJournal
  10. Shen, Xiaogang ; Zuo, Xiaofei ; et al.
    In: Frontiers in Immunology ; volume 14 ; ISSN 1664-3224, 2023
    academicJournal
  11. ks'kjko bps ¼pquMs½1, dq-liuk x ; k vfuy dkGs2, çk-M'-la/
    2023
    academicJournal
  12. izk-jkts'k l- cgw#ih
    In: Journal of Research & Development' 15(1) 15-16, 2023
    academicJournal
  13. Abril-Parreno, Laura ; Carthy, Tara R. ; et al.
    2023
    academicJournal
  14. zhang, Juanxiang
    2024
    unknown
  15. zhang, Juanxiang
    2024
    unknown
  16. Sheng, Minjie ; Cai, Haiying ; et al.
    In: Frontiers in Genetics ; volume 12 ; ISSN 1664-8021, 2021
    academicJournal
  17. Wanelik, Klara M. ; Begon, Michael ; et al.
    2018
    Online academicJournal
  18. Minjie Sheng (446578) ; Haiying Cai (776216) ; et al.
    2021
    unknown
  19. Minjie Sheng (446578) ; Haiying Cai (776216) ; et al.
    2021
    unknown
  20. Minjie Sheng (446578) ; Haiying Cai (776216) ; et al.
    2021
    unknown
xs 0 - 576
sm 576 - 768
md 768 - 992
lg 992 - 1200
xl 1200 - 1366
xxl 1366 -