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Aptamers as targeted therapeutics: current potential and challenges
Nucleic acid aptamers, often termed'chemical antibodies', are functionally comparable to
traditional antibodies, but offer several advantages, including their relatively small physical …
traditional antibodies, but offer several advantages, including their relatively small physical …
The p53 pathway: origins, inactivation in cancer, and emerging therapeutic approaches
Inactivation of the transcription factor p53, through either direct mutation or aberrations in
one of its many regulatory pathways, is a hallmark of virtually every tumor. In recent years …
one of its many regulatory pathways, is a hallmark of virtually every tumor. In recent years …
The gut microbiome switches mutant p53 from tumour-suppressive to oncogenic
E Kadosh, I Snir-Alkalay, A Venkatachalam, S May… - Nature, 2020 - nature.com
Somatic mutations in p53, which inactivate the tumour-suppressor function of p53 and often
confer oncogenic gain-of-function properties, are very common in cancer,. Here we studied …
confer oncogenic gain-of-function properties, are very common in cancer,. Here we studied …
Arsenic trioxide rescues structural p53 mutations through a cryptic allosteric site
S Chen, JL Wu, Y Liang, YG Tang, HX Song, LL Wu… - Cancer cell, 2021 - cell.com
TP53 is the most frequently mutated gene in cancer, yet these mutations remain
therapeutically non-actionable. Major challenges in drugging p53 mutations include …
therapeutically non-actionable. Major challenges in drugging p53 mutations include …
Biomimetic nanosonosensitizers combined with noninvasive ultrasound actuation to reverse drug resistance and sonodynamic-enhanced chemotherapy against …
H Chen, S Zhang, Q Fang, H He, J Ren, D Sun, J Lai… - ACS …, 2022 - ACS Publications
Glioblastoma (GBM) is the most devastating brain tumor and highly resistant to conventional
chemotherapy. Herein, we introduce biomimetic nanosonosensitizer systems (MDNPs) …
chemotherapy. Herein, we introduce biomimetic nanosonosensitizer systems (MDNPs) …
Mutations in the p53 tumor suppressor gene: important milestones at the various steps of tumorigenesis
Inactivation of the p53 tumor suppressor is a frequent event in tumorigenesis. In most cases,
the p53 gene is mutated, giving rise to a stable mutant protein whose accumulation is …
the p53 gene is mutated, giving rise to a stable mutant protein whose accumulation is …
[HTML][HTML] Gain-of-function mutant p53: all the roads lead to tumorigenesis
Y Stein, V Rotter, R Aloni-Grinstein - International journal of molecular …, 2019 - mdpi.com
The p53 protein is mutated in about 50% of human cancers. Aside from losing the tumor-
suppressive functions of the wild-type form, mutant p53 proteins often acquire inherent …
suppressive functions of the wild-type form, mutant p53 proteins often acquire inherent …
A designed inhibitor of p53 aggregation rescues p53 tumor suppression in ovarian carcinomas
A Soragni, DM Janzen, LM Johnson, AG Lindgren… - Cancer cell, 2016 - cell.com
Half of all human cancers lose p53 function by missense mutations, with an unknown
fraction of these containing p53 in a self-aggregated amyloid-like state. Here we show that a …
fraction of these containing p53 in a self-aggregated amyloid-like state. Here we show that a …
Protein folding and misfolding
CM Dobson - Nature, 2003 - nature.com
The manner in which a newly synthesized chain of amino acids transforms itself into a
perfectly folded protein depends both on the intrinsic properties of the amino-acid sequence …
perfectly folded protein depends both on the intrinsic properties of the amino-acid sequence …
Cisplatin: mode of cytotoxic action and molecular basis of resistance
ZH Siddik - Oncogene, 2003 - nature.com
Cisplatin is one of the most potent antitumor agents known, displaying clinical activity
against a wide variety of solid tumors. Its cytotoxic mode of action is mediated by its …
against a wide variety of solid tumors. Its cytotoxic mode of action is mediated by its …