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Добірка наукової літератури з теми "G4 stabilization"
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Статті в журналах з теми "G4 stabilization"
Li, Conghui, Honghong Wang, Zhinang Yin, Pingping Fang, Ruijing Xiao, Ying Xiang, Wen Wang, et al. "Ligand-induced native G-quadruplex stabilization impairs transcription initiation." Genome Research 31, no. 9 (August 16, 2021): 1546–60. http://dx.doi.org/10.1101/gr.275431.121.
Повний текст джерелаDharmaiah, Sharvari, Vasudev Tadimeti, Prit Benny Malgulwar, Christian Alvarez, Ahsan Farooqi, and Jason Huse. "CBIO-04. G-QUADRUPLEX STABILIZATION ENHANCES REPLICATION STRESS AND DNA DAMAGE IN ATRX-DEFICIENT HIGH-GRADE GLIOMA." Neuro-Oncology 23, Supplement_6 (November 2, 2021): vi27—vi28. http://dx.doi.org/10.1093/neuonc/noab196.105.
Повний текст джерелаDesai, Nakshi, Viraj Shah, and Bhaskar Datta. "Assessing G4-Binding Ligands In Vitro and in Cellulo Using Dimeric Carbocyanine Dye Displacement Assay." Molecules 26, no. 5 (March 5, 2021): 1400. http://dx.doi.org/10.3390/molecules26051400.
Повний текст джерелаPsaras, Alexandra Maria, Katarina T. Chang, Taisen Hao, and Tracy A. Brooks. "Targeted Downregulation of MYC through G-quadruplex Stabilization by DNAi." Molecules 26, no. 18 (September 13, 2021): 5542. http://dx.doi.org/10.3390/molecules26185542.
Повний текст джерелаDharmaiah, Sharvari, Ahsan Farooqi, Christian Alvarez, Vladislav Sharin, David Irvin, and Jason Huse. "CBIO-18. G-QUADRUPLEX STABILIZATION TARGETS ATRX-DEFICIENT HIGH-GRADE GLIOMA VIA INDUCTION OF p53-INDEPENDENT APOPTOSIS." Neuro-Oncology 22, Supplement_2 (November 2020): ii19. http://dx.doi.org/10.1093/neuonc/noaa215.078.
Повний текст джерелаRyazantsev, Dmitriy Y., Mikhail Yu Myshkin, Vera A. Alferova, Vladimir B. Tsvetkov, Elena Y. Shustova, Polina N. Kamzeeva, Polina V. Kovalets, et al. "Probing GFP Chromophore Analogs as Anti-HIV Agents Targeting LTR-III G-Quadruplex." Biomolecules 11, no. 10 (September 26, 2021): 1409. http://dx.doi.org/10.3390/biom11101409.
Повний текст джерелаRocca, Roberta, Francesca Scionti, Matteo Nadai, Federica Moraca, Annalisa Maruca, Giosuè Costa, Raffaella Catalano, et al. "Chromene Derivatives as Selective TERRA G-Quadruplex RNA Binders with Antiproliferative Properties." Pharmaceuticals 15, no. 5 (April 28, 2022): 548. http://dx.doi.org/10.3390/ph15050548.
Повний текст джерелаFlusberg, Deborah A., Noreen F. Rizvi, Victoria Kutilek, Christine Andrews, Peter Saradjian, Chad Chamberlin, Patrick Curran, et al. "Identification of G-Quadruplex-Binding Inhibitors of Myc Expression through Affinity Selection–Mass Spectrometry." SLAS DISCOVERY: Advancing the Science of Drug Discovery 24, no. 2 (September 11, 2018): 142–57. http://dx.doi.org/10.1177/2472555218796656.
Повний текст джерелаSalerno, Silvia, Elisabetta Barresi, Emma Baglini, Valeria Poggetti, Sabrina Taliani, and Federico Da Settimo. "Dual Targeting Topoisomerase/G-Quadruplex Agents in Cancer Therapy—An Overview." Biomedicines 10, no. 11 (November 15, 2022): 2932. http://dx.doi.org/10.3390/biomedicines10112932.
Повний текст джерелаDavis, Edward T., Joseph Pagkalos, and Branko Kopjar. "Polyethylene manufacturing characteristics have a major effect on the risk of revision surgery in cementless and hybrid total hip arthroplasties." Bone & Joint Journal 102-B, no. 1 (January 2020): 90–101. http://dx.doi.org/10.1302/0301-620x.102b1.bjj-2019-0779.r1.
Повний текст джерелаДисертації з теми "G4 stabilization"
Froux, Aurane. "G-quadruplex binding by transition metal complexes : the whole pathway from design to synthesis, to in cellulo anticancer investigations." Electronic Thesis or Diss., Université de Lorraine, 2024. https://docnum.univ-lorraine.fr/ulprive/DDOC_T_2024_0206_FROUX.pdf.
Повний текст джерелаTriple-negative breast cancer and pancreatic adenocarcinoma are associated to very low survival-rates due to their high resistance to conventional treatments, posing significant public healthiness issue. The development of new targeted therapeutic options is then crucial. G-rich sequences in nucleic acids can form non-conventional secondary structures, known as G-quadruplexes, identified in telomeric sequences and in the promoters of potent oncogenes, such as cMYC, cKIT, and BCL2. These structures play a critical role in regulating gene expression, making them as promising therapeutic targets in cancer treatment.In this study, we employed a transdisciplinary approach, integrating chemical synthesis, molecular dynamic simulations, and cellular and molecular biology, to identify novel G-quadruplex binders and stabilizers aimed at controlling cancer progression. Previous work in our laboratory demonstrated that symmetric planar metal complexes could specifically bind these structures. In that sense, we synthesized 12 new transition metal complexes of Zn2+, Ni2+, Cu2+, Pd2+ and Pt2+, from the Salphen scaffold. Their ability to selectively bind and stabilize G-quadruplexes over double-stranded DNA were confirmed. Molecular dynamic simulations revealed an unconventional binding mode involving interaction with the G-quadruplex loop.Immunofluorescence assays confirmed that the compounds enhance G-quadruplex formation, in cancer cell lines, leading to the early downregulation of several G-quadruplex-driven oncogenes, such as kRAS, RET, and cMYC. This downregulation reduced cancer cell proliferation and viability, with less effect on non-cancerous cells.Some complexes induced apoptosis in cancer cells without affecting the non-neoplastic cells, after decreased hRAS and cMYC transcript levels, while other compounds caused DNA damage in pancreatic cancer cells T3M4. Notably, Zn2+ compounds increased VEGF-A expression, enhancing its transcription. We also investigated the effects of G-quadruplex stabilization on macrophages polarization, showing that nickel compounds promoted the polarization of M0 macrophages towards the anticancer M1 phenotype, while inhibiting the acquisition of pro-tumoral M2 markers.Overall, our novel metal complexes demonstrate significant potential in stabilizing G-quadruplex and exhibit promising anticancer properties, including modulation of the tumor microenvironment. These preliminary results suggest avenues for further research, with potential implications for advancing strategies in cancer therapy
Singh, Mandeep. "STUDIES ON THE SIZE AND NON-PLANARITY OF AROMATIC STACKING MOIETY ON CONFORMATION SELECTIVITY AND THERMAL STABILIZATION OF G-QUADRUPLEXES." Scholarly Commons, 2020. https://scholarlycommons.pacific.edu/uop_etds/3725.
Повний текст джерелаCarvalho, Josué Leandro de Oliveira e. "Biosynthesis of a G-Quadruplex—forming sequence and its stabilization by ligands." Master's thesis, 2015. http://hdl.handle.net/10400.6/6472.
Повний текст джерелаAlém da forma B Watson e Crick do ADN duplex, os G-quadruplexes são estruturas de ADN de quatro cadeias, formadas in vivo pela auto-associação de sequências ricas em guaninas. Estas podem ser formadas por uma, duas ou quatro cadeias distintas de ADN e apresentar uma diversidade de topologias, definidas pela orientação da cadeia, tamanho dos loops e a sequência. G-quadruplexes podem ser encontrados nos telómeros, regiões de troca das imunoglobulinas e nas regiões dos promotores génicos. A localização biologicamente relevante no genoma faz com que estas estruturas altamente ordenadas sejam um alvo atrativo do desenho de fármacos e o desenvolvimento de ligandos altamente específicos que ligam e estabilizam o G-quadruplex com ação terapêutica. Neste trabalho, descreve-se a biossíntese da nova sequência de ADN rica em guaninas e formadora de G-quadruplex 58Sγ3, utilizando amplificação por plasmídeo. A recuperação e purificação do oligonucleótido 58Sγ3 é efetuada por cromatografia de exclusão molecular. A formação de G-quadruplex é promovida e a sua topologia é determinada por dicroísmo circular. A estabilização da estrutura do G-quadruplex com ligandos derivados de quinolina e naftaleno é estudada utilizando ensaios de estabilização térmica no dicroísmo circular, G4-FID e PCR-stop. Os resultados sugerem que 58Sγ3 adota uma estrutura G-quadruplex paralela em tampão 500 mM KCl e que os ligandos de naftaleno ligam e estabilizam a estrutura do G-quadruplex. Os ligandos demonstraram também ser específicos do G-quadruplex em relação ao ADN duplex além de inibir a Taq ADN polimerase. Este trabalho fornece evidência da formação de G-quadruplex nas regiões de troca das imunoglobulinas. Além disso, sugere que os derivados de naftaleno atuam como ligandos do G-quadruplex e que podem ser potencialmente utilizados para inibir a transcrição de genes em células tumorais.