MTMT-ben szereplő publikációk tallózása szerző szerint "Buday, László"

A találatok rendezése: Rendezés: Találatok:

  • Szeder, Bálint; Tárnoki-Zách, Júlia; Lakatos, Dóra; Vas, Virág; Kudlik, Gyöngyi; Merő, Balázs; Koprivanacz, Kitti; Bányai, László; Hámori, Lilla; Róna, Gergely; Czirók, András; Füredi, András; Buday, László (2019)
    Epithelial to mesenchymal transition (EMT) is a multipurpose process involved in wound healing, development, and certain pathological processes, such as metastasis formation. The Tks4 scaffold protein has been implicated ...
  • Ádám Csaba; Fekete, Anna; Bőgel, Gábor; Németh, Zsuzsanna; Tökési, Natália; Ovádi Judit; Liliom, Károly; Pesti, Szabolcs; Geiszt, Miklós; Buday, László (2015)
    BACKGROUND: Cells deploy quality control mechanisms to remove damaged or misfolded proteins. Recently, we have reported that a mutation (R43W) in the Frank-ter Haar syndrome protein Tks4 resulted in aberrant intracellular ...
  • Vas, Virág; Háhner, Tamás; Kudlik, Gyöngyi; Ernszt, Dávid; Kvell, Krisztián; Kuti, Dániel; Kovács, Krisztina J; Tóvári, József; Trexler, Mária; Merő, Balázs László; Szeder, Bálint; Koprivanacz, Kitti; Buday, László (2019)
    Obesity and adipocyte malfunction are related to and arise as consequences of disturbances in signaling pathways. Tyrosine kinase substrate with four Src homology 3 domains (Tks4) is a scaffold protein that establishes a ...
  • Bencsik, Norbert; Pusztai, Szilvia; Borbély, Sándor; Fekete, Anna; Dülk, Metta; Kis, Viktor; Pesti, Szabolcs; Vas, Virág; Szűcs, Attila; Buday, László; Schlett, Katalin (2019)
  • Dülk, Metta; Szeder, Bálint; Glatz, Gábor; Mero B; Koprivanacz, Kitti; Kudlik, Gyöngyi; Vas, Virág; Sipeki, Szabolcs; Cserkaszky A; Radnai, László; Buday, László (2018)
    The non-receptor tyrosine kinase Src is a central component of the EGF signaling pathway. Our group recently showed that the Frank-ter Haar syndrome protein Tks4 (tyrosine kinase substrate with four Src homology 3 domains) ...
  • Fekete, Anna; Bőgel, Gábor; Pesti, Szabolcs; Péterfi, Zalán; Geiszt, Miklós; Buday, László (2013)
    Background: Tks5/FISH is a scaffold protein comprising of five SH3 domains and one PX domain. Tks5 is a substrate of the tyrosine kinase Src and is required for the organization of podosomes/invadopodia implicated in ...
  • Buday, László; Vas, Virág (2020)
    Somatic mutations in the RAS genes are frequent in human tumors, especially in pancreatic, colorectal, and non-small-cell lung cancers. Such mutations generally decrease the ability of Ras to hydrolyze GTP, maintaining the ...
  • Vas, Virág; Kovács, Tamás; Körmendi, Szandra Katalin; Bródy, Andrea; Kudlik, Gyöngyi; Szeder, Bálint; Mező, Diána; Kállai, Dóra; Koprivanacz, Kitti; Merő, Balázs László; Dülk, Metta; Tóvári, József; Vajdovich, Péter; Şenel, Ş Neslihan; Özcan, Ilknur; Helyes, Zsuzsanna; Dobó-Nagy, Csaba; Buday, László (2019)
    The main driver of osteoporosis is an imbalance between bone resorption and formation. The pathogenesis of osteoporosis has also been connected to genetic alterations in key osteogenic factors and dysfunction of bone marrow ...
  • Takács, Tamás; Kudlik, Gyöngyi; Kurilla, Anita; Szeder, Bálint; Buday, László; Vas, V.irág (2020)
    The genetic alterations in cancer cells are tightly linked to signaling pathway dysregulation. Ras is a key molecule that controls several tumorigenesis-related processes, and mutations in RAS genes often lead to unbiased ...
  • Koprivanacz, Kitti; Tőke, Orsolya; Besztercei, B; Juhász, Tünde; Radnai, László; Merő, Balázs László; Mihály, Judith; Péter, Mária; Balogh, Gábor; Vígh, László; Buday, László; Liliom, Károly (2017)
    Src homology 3 or SH3 domains constitute one of the most common protein domains in signal transduction, generally characterized by their binding to proline-rich sequences on interacting signaling proteins. Caskin1, a ...
  • Vető, Borbála; Bojcsuk, Dóra; Bacquet C; Kiss J; Sipeki, Szabolcs; Martin L; Buday, László; Bálint, Bálint László; Arányi, Tamás (2017)
    Hepatocyte nuclear factor 4 alpha (HNF4alpha) nuclear receptor is a master regulator of hepatocyte development, nutrient transport and metabolism. HNF4alpha is regulated both at the transcriptional and post-transcriptional ...