Serveur d'exploration sur la rapamycine et les champignons - Corpus (Accueil)

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Molecular Biology < Molecular Chaperones < Molecular Conformation  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 15.
Ident.Authors (with country if any)Title
000024 (2020) John S. O' Neill ; Nathaniel P. Hoyle ; J Brian Robertson ; Rachel S. Edgar ; Andrew D. Beale ; Sew Y. Peak-Chew ; Jason Day ; Ana S H. Costa ; Christian Frezza ; Helen C. CaustonEukaryotic cell biology is temporally coordinated to support the energetic demands of protein homeostasis.
000381 (2019) C A Padilla ; J A Bárcena ; M J L Pez-Grueso ; R. Requejo-AguilarThe regulation of TORC1 pathway by the yeast chaperones Hsp31 is mediated by SFP1 and affects proteasomal activity.
000884 (2017) Juan Liu ; Hailong Wang ; Jinyan Gu ; Tingjuan Deng ; Zhuangchuan Yuan ; Boli Hu ; Yunbin Xu ; Yan Yan ; Jie Zan ; Min Liao ; Erin Dicaprio ; Jianrong Li ; Shuo Su ; Jiyong ZhouBECN1-dependent CASP2 incomplete autophagy induction by binding to rabies virus phosphoprotein.
000B62 (2015) Bobbiejane Stauffer ; Ted PowersTarget of rapamycin signaling mediates vacuolar fission caused by endoplasmic reticulum stress in Saccharomyces cerevisiae.
000F12 (2014) Nour El Houda Benbahouche ; Ioannis Iliopoulos ; István Török ; Joachim Marhold ; Julien Henri ; Andrey V. Kajava ; Robert Farkaš ; Tore Kempf ; Martina Schnölzer ; Philippe Meyer ; István Kiss ; Edouard Bertrand ; Bernard M. Mechler ; Bérengère Pradet-BaladeDrosophila Spag is the homolog of RNA polymerase II-associated protein 3 (RPAP3) and recruits the heat shock proteins 70 and 90 (Hsp70 and Hsp90) during the assembly of cellular machineries.
000F59 (2013) Stéphanie Escusa-Toret ; Willianne I M. Vonk ; Judith FrydmanSpatial sequestration of misfolded proteins by a dynamic chaperone pathway enhances cellular fitness during stress.
000F89 (2013) Xiaopeng Wu ; Hailong Wang ; Lu Bai ; Yang Yu ; Zeyu Sun ; Yan Yan ; Jiyong ZhouMitochondrial proteomic analysis of human host cells infected with H3N2 swine influenza virus.
001114 (2012) Kevin M. Doherty ; Leah D. Pride ; James Lukose ; Brian E. Snydsman ; Ronald Charles ; Ajay Pramanik ; Eric G. Muller ; David Botstein ; Carol Wood MooreLoss of a 20S proteasome activator in Saccharomyces cerevisiae downregulates genes important for genomic integrity, increases DNA damage, and selectively sensitizes cells to agents with diverse mechanisms of action.
001499 (2009) Jill A. Fielhaber ; Ying-Shan Han ; Jason Tan ; Shuo Xing ; Catherine M. Biggs ; Kwang-Bo Joung ; Arnold S. KristofInactivation of mammalian target of rapamycin increases STAT1 nuclear content and transcriptional activity in alpha4- and protein phosphatase 2A-dependent fashion.
001690 (2007) Gina Devasahayam ; Daniel J. Burke ; Thomas W. SturgillGolgi manganese transport is required for rapamycin signaling in Saccharomyces cerevisiae.
001734 (2007) Thomas P. NeufeldTOR regulation: sorting out the answers.
001748 (2006) Gina Devasahayam ; Danilo Ritz ; Stephen B. Helliwell ; Daniel J. Burke ; Thomas W. SturgillPmr1, a Golgi Ca2+/Mn2+-ATPase, is a regulator of the target of rapamycin (TOR) signaling pathway in yeast.
001856 (2005) Paul Monaghan ; Angus BellA Plasmodium falciparum FK506-binding protein (FKBP) with peptidyl-prolyl cis-trans isomerase and chaperone activities.
001A65 (1998) M. Nanahoshi ; T. Nishiuma ; Y. Tsujishita ; K. Hara ; S. Inui ; N. Sakaguchi ; K. YonezawaRegulation of protein phosphatase 2A catalytic activity by alpha4 protein and its yeast homolog Tap42.
001A79 (1997) M. Onda ; S. Inui ; K. Maeda ; M. Suzuki ; E. Takahashi ; N. SakaguchiExpression and chromosomal localization of the human alpha 4/IGBP1 gene, the structure of which is closely related to the yeast TAP42 protein of the rapamycin-sensitive signal transduction pathway.

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