keyword
https://read.qxmd.com/read/38569135/peptide-inhibitor-targeting-the-extraterminal-domain-in-brd4-potently-suppresses-breast-cancer-both-in-vitro-and-in-vivo
#21
JOURNAL ARTICLE
Qi-Xuan Huang, Da-Meng Fan, Zao-Zao Zheng, Ting Ran, Ao Bai, Rong-Quan Xiao, Guo-Sheng Hu, Wen Liu
BRD4 is associated with a variety of human diseases, including breast cancer. The crucial roles of amino-terminal bromodomains (BDs) of BRD4 in binding with acetylated histones to regulate oncogene expression make them promising drug targets. However, adverse events impede the development of the BD inhibitors. BRD4 adopts an extraterminal (ET) domain, which recruits proteins to drive oncogene expression. We discovered a peptide inhibitor PiET targeting the ET domain to disrupt BRD4/JMJD6 interaction, a protein complex critical in oncogene expression and breast cancer...
April 3, 2024: Journal of Medicinal Chemistry
https://read.qxmd.com/read/38567724/brd2-promotes-antibody-class-switch-recombination-by-facilitating-dna-repair-in-collaboration-with-nipbl
#22
JOURNAL ARTICLE
Santosh K Gothwal, Ahmed M Refaat, Mikiyo Nakata, Andre Stanlie, Tasuku Honjo, Nasim A Begum
Efficient repair of DNA double-strand breaks in the Ig heavy chain gene locus is crucial for B-cell antibody class switch recombination (CSR). The regulatory dynamics of the repair pathway direct CSR preferentially through nonhomologous end joining (NHEJ) over alternative end joining (AEJ). Here, we demonstrate that the histone acetyl reader BRD2 suppresses AEJ and aberrant recombination as well as random genomic sequence capture at the CSR junctions. BRD2 deficiency impairs switch (S) region synapse, optimal DNA damage response (DDR), and increases DNA break end resection...
April 3, 2024: Nucleic Acids Research
https://read.qxmd.com/read/38566153/super-enhancer-lncrnas-a-novel-hallmark-in-cancer
#23
REVIEW
Ping Song, Rongyan Han, Fan Yang
Super enhancers (SEs) consist of clusters of enhancers, harboring an unusually high density of transcription factors, mediator coactivators and epigenetic modifications. SEs play a crucial role in the maintenance of cancer cell identity and promoting oncogenic transcription. Super enhancer lncRNAs (SE-lncRNAs) refer to either transcript from SEs locus or interact with SEs, whose transcriptional activity is highly dependent on SEs. Moreover, these SE-lncRNAs can interact with their associated enhancer regions in cis and modulate the expression of oncogenes or key signal pathways in cancers...
April 2, 2024: Cell Communication and Signaling: CCS
https://read.qxmd.com/read/38565708/brd4-inhibitors-broadly-promote-erastin-induced-ferroptosis-in-different-cell-lines-by-targeting-ros-and-fsp1
#24
JOURNAL ARTICLE
Chenyang Fan, Xiaohong Guo, Jie Zhang, Wen Zheng, Chonglin Shi, Yongwei Qin, Haoliang Shen, Yang Lu, Yihui Fan, Yanli Li, Liuting Chen, Renfang Mao
Ferroptosis, an iron-dependent form of programmed cell death, is a promising strategy for cancer treatment. Bromodomain-containing protein 4 (BRD4) is an epigenetic reader and a promising target for cancer therapeutics. However, the role of BRD4 in ferroptosis is controversial and the value of the interaction between BRD4 inhibitors and ferroptosis inducers remains to be explored. Here, we found that BRD4 inhibition greatly enhanced erastin-induced ferroptosis in different types of cells, including HEK293T, HeLa, HepG2, RKO, and PC3 cell lines...
April 3, 2024: Discover. Oncology
https://read.qxmd.com/read/38565308/-bromodomain-and-extra-terminal-domain-protein-2-in-multiple-human-diseases
#25
JOURNAL ARTICLE
Yikang Ji, Wantao Chen, Xu Wang
Bromine domain protein 2 (BRD2), a member of the Bromodomain and extraterminal domain (BET) protein family, is a crucial epigenetic regulator with significant function in various diseases and cellular processes. The central function of BRD2 is modulating gene transcription by binding to acetylated lysine residues on histones and transcription factors. This review highlights key findings on BRD2 in recent years, emphasizing its roles in maintaining genomic stability, influencing chromatin spatial organization, and participating in transcriptional regulation...
April 2, 2024: Journal of Pharmacology and Experimental Therapeutics
https://read.qxmd.com/read/38564841/therapeutic-targeting-of-bet-bromodomain-and-other-epigenetic-acetylrecognition-domain-containing-factors
#26
REVIEW
Sarah Gold, Ali Shilatifard
Development of cancer therapies targeting chromatin modifiers and transcriptional regulatory factors is rapidly expanding to include new targets and novel targeting strategies. At the same time, basic molecular research continues to refine our understanding of the epigenetic mechanisms regulating transcription, gene expression, and oncogenesis. This mini-review focuses on cancer therapies targeting the chromatin-associated factors that recognize histone lysine acetylation. Recently reported safety and efficacy are discussed for inhibitors targeting the bromodomains of bromodomain and extraterminal domain (BET) family proteins...
April 1, 2024: Current Opinion in Genetics & Development
https://read.qxmd.com/read/38564636/transcriptional-elongation-control-of-hypoxic-response
#27
JOURNAL ARTICLE
Shimaa Hassan AbdelAziz Soliman, Marta Iwanaszko, Bin Zheng, Sarah Gold, Benjamin Charles Howard, Madhurima Das, Ram Prosad Chakrabarty, Navdeep S Chandel, Ali Shilatifard
The release of paused RNA polymerase II (RNAPII) from promoter-proximal regions is tightly controlled to ensure proper regulation of gene expression. The elongation factor PTEF-b is known to release paused RNAPII via phosphorylation of the RNAPII C-terminal domain by its cyclin-dependent kinase component, CDK9. However, the signal and stress-specific roles of the various RNAPII-associated macromolecular complexes containing PTEF-b/CDK9 are not yet clear. Here, we identify and characterize the CDK9 complex required for transcriptional response to hypoxia...
April 9, 2024: Proceedings of the National Academy of Sciences of the United States of America
https://read.qxmd.com/read/38563585/phosphocreatine-promotes-epigenetic-reprogramming-to-facilitate-glioblastoma-growth-through-stabilizing-brd2
#28
JOURNAL ARTICLE
Lishu Chen, Qinghui Qi, Xiaoqing Jiang, Jin Wu, Yuanyuan Li, Zhaodan Liu, Yan Cai, Haowen Ran, Songyang Zhang, Cheng Zhang, Huiran Wu, Shuailiang Cao, Lanjuan Mi, Dake Xiao, Haohao Huang, Shuai Jiang, Jiaqi Wu, Bohan Li, Jiong Xie, Ji Qi, Fangye Li, Panpan Liang, Qiuying Han, Min Wu, Wenchao Zhou, Chenhui Wang, Weina Zhang, Xin Jiang, Kun Zhang, Huiyan Li, Xuemin Zhang, Ailing Li, Tao Zhou, Jianghong Man
Glioblastoma (GBM) exhibits profound metabolic plasticity for survival and therapeutic resistance, while the underlying mechanisms remain unclear. Here, we show that GBM stem cells (GSCs) reprogram the epigenetic landscape by producing substantial amounts of phosphocreatine (PCr). This production is attributed to the elevated transcription of brain-type creatine kinase (CKB), mediated by Zinc finger E-box binding homeobox 1 (ZEB1). PCr inhibits the poly-ubiquitination of the chromatin regulator bromodomain containing protein 2 (BRD2) by outcompeting the E3 ubiquitin ligase SPOP for BRD2 binding...
April 2, 2024: Cancer Discovery
https://read.qxmd.com/read/38562779/association-between-maternal-perinatal-stress-and-depression-on-infant-dna-methylation-in-the-first-year-of-life
#29
Sarina Abrishamcar, Beryl Zhuang, Mara Thomas, Nicole Gladish, Julia MacIsaac, Meaghan Jones, Elinor Simons, Theo Moraes, Piush Mandhane, Jeffrey Brook, Padmaja Subbarao, Stuart Turvey, Edith Chen, Gregory Miller, Michael Kobor, Anke Huels
Maternal stress and depression during pregnancy and the first year of the infant's life affect a large percentage of mothers. Maternal stress and depression have been associated with adverse fetal and childhood outcomes as well as differential child DNA methylation (DNAm). However, the biological mechanisms connecting maternal stress and depression to poor health outcomes in children are still largely unknown. Here we aim to determine whether prenatal stress and depression are associated with changes in cord blood mononuclear cell DNAm (CBMC-DNAm) in newborns (n = 119) and whether postnatal stress and depression are associated with changes in peripheral blood mononuclear cell DNAm (PBMC-DNAm) in children of 12 months of age (n = 113) from the Canadian Healthy Infant Longitudinal Development (CHILD) cohort...
March 21, 2024: Research Square
https://read.qxmd.com/read/38561350/targeted-protein-o-glcnacylation-using-bifunctional-small-molecules
#30
JOURNAL ARTICLE
Bowen Ma, Khadija Shahed Khan, Tongyang Xu, Josefina Xeque Amada, Zhihao Guo, Yunpeng Huang, Yu Yan, Henry Lam, Alfred Sze-Lok Cheng, Billy Wai-Lung Ng
Protein O-linked β- N -acetylglucosamine modification (O-GlcNAcylation) plays a crucial role in regulating essential cellular processes. The disruption of the homeostasis of O-GlcNAcylation has been linked to various human diseases, including cancer, diabetes, and neurodegeneration. However, there are limited chemical tools for protein- and site-specific O-GlcNAc modification, rendering the precise study of the O-GlcNAcylation challenging. To address this, we have developed heterobifunctional small molecules, named O-GlcNAcylation TArgeting Chimeras (OGTACs), which enable protein-specific O-GlcNAcylation in living cells...
April 1, 2024: Journal of the American Chemical Society
https://read.qxmd.com/read/38561091/transcriptional-control-of-cardiac-energy-metabolism-in-health-and-disease-lessons-from-animal-models
#31
REVIEW
Teresa Rubio-Tomás, Carolina Soler-Botija, Ofelia Martínez-Estrada, Josep A Villena
Cardiac ATP production is tightly regulated in order to satisfy the evolving energetic requirements imposed by different cues during health and pathological conditions. In order to sustain high ATP production rates, cardiac cells are endowed with a vast mitochondrial network that is essentially acquired during the perinatal period. Nevertheless, adult cardiac cells also adapt their mitochondrial mass and oxidative function to changes in energy demand and substrate availability by fine-tuning the pathways and mitochondrial machinery involved in energy production...
March 30, 2024: Biochemical Pharmacology
https://read.qxmd.com/read/38559135/bet-inhibitors-as-a-therapeutic-intervention-in-gastrointestinal-gene-signature-positive-castration-resistant-prostate-cancer
#32
Shipra Shukla, Dan Li, Holly Nguyen, Jennifer Conner, Gabriella Bayshtok, Woo Hyun Cho, Mohini Pachai, Nicholas Teri, Eric Campeau, Sarah Attwell, Patrick Trojer, Irina Ostrovnaya, Anuradha Gopalan, Eva Corey, Ping Chi, Yu Chen
UNLABELLED: A subgroup of castration-resistant prostate cancer (CRPC) aberrantly expresses a gastrointestinal (GI) transcriptome governed by two GI-lineage-restricted transcription factors, HNF1A and HNF4G. In this study, we found that expression of GI transcriptome in CRPC correlates with adverse clinical outcomes to androgen receptor signaling inhibitor treatment and shorter overall survival. Bromo- and extra-terminal domain inhibitors (BETi) downregulated HNF1A, HNF4G, and the GI transcriptome in multiple CRPC models, including cell lines, patient-derived organoids, and patient-derived xenografts, while AR and the androgen-dependent transcriptome were largely spared...
March 13, 2024: bioRxiv
https://read.qxmd.com/read/38554135/combinatorial-ubiquitination-real-time-proteolysis-cure-pros-a-modular-platform-for-generating-reversible-self-assembling-bifunctional-targeted-degraders
#33
JOURNAL ARTICLE
Sarah F Giardina, Elena Valdambrini, Pradeep K Singh, Manny D Bacolod, Ganesh Babu-Karunakaran, Michael Peel, J David Warren, Francis Barany
Proteolysis-Targeting Chimeras (PROTACs) are bifunctional molecules that bring a target protein and an E3 ubiquitin ligase into proximity to append ubiquitin, thus directing target degradation. Although numerous PROTACs have entered clinical trials, their development remains challenging, and their large size can produce poor drug-like properties. To overcome these limitations, we have modified our Coferon platform to generate Combinatorial Ubiquitination REal-time PROteolysis (CURE-PROs). CURE-PROs are small molecule degraders designed to self-assemble through reversible bio-orthogonal linkers to form covalent heterodimers...
March 30, 2024: Journal of Medicinal Chemistry
https://read.qxmd.com/read/38553322/the-pharmacogenetic-variability-associated-with-the-pharmacokinetics-and-pharmacodynamics-of-rivaroxaban-in-healthy-chinese-subjects-a-national-multicenter-exploratory-study
#34
JOURNAL ARTICLE
Zhiyan Liu, Qiufen Xie, Xia Zhao, Yunlong Tan, Wenping Wang, Yu Cao, Xiaohua Wei, Guangyan Mu, Hanxu Zhang, Shuang Zhou, Xiaobin Wang, Ying Cao, Xin Li, Song Chen, Duanwen Cao, Yimin Cui, Qian Xiang
PURPOSE: This study aimed to explore the pharmacogenetic variability associated with the pharmacokinetics (PK) and pharmacodynamics (PD) of rivaroxaban in healthy Chinese subjects. METHODS: This was a multicenter study that included 304 healthy adults aged 18 to 45 years with unknown genotypes. All participants were administered a single dose of rivaroxaban at 10 mg, 15 mg, or 20 mg. PK and PD parameters were measured, and exome-wide association analysis was conducted...
March 28, 2024: Clinical Therapeutics
https://read.qxmd.com/read/38547933/mettl3-orchestrates-glycolysis-by-stabilizing-the-c-myc-wdr5-complex-in-triple-negative-breast-cancer
#35
JOURNAL ARTICLE
Xiao-Ning Yuan, You-Cheng Shao, Xiao-Qing Guan, Qin Liu, Meng-Fei Chu, Ze-Lin Yang, Hui Li, Sai Zhao, Yi-Hao Tian, Jing-Wei Zhang, Lei Wei
BACKGROUND: The carcinogenic transcription factor c-Myc is the most aggressive oncogene, which drive malignant transformation and dissemination of triple-negative breast cancer (TNBC). Recruitment of many cofactors, especially WDR5, a protein that nucleates H3K4me chromatin modifying complexes, play a pivotal role in regulating c-Myc-dependent gene transcription, a critical process for c-Myc signaling to function in a variety of biological and pathological contexts. For this reason, interrupting the interaction between c-Myc and the synergistic factor WDR5 may become the most promising new strategy for treating c-Myc driven TNBC...
March 26, 2024: Biochimica et Biophysica Acta. Molecular Cell Research
https://read.qxmd.com/read/38540967/chromatin-remodeling-related-prdm1-increases-stomach-cancer-proliferation-and-is-counteracted-by-bromodomain-inhibitor
#36
JOURNAL ARTICLE
Yu-Hsuan Hung, Hui-Ching Wang, Mei-Ren Pan, Li-Tzong Chen
Gastrointestinal (GI) cancers are some of the main public health threats to the world. Even though surgery, chemotherapy, and targeted therapy are available for their treatments, these approaches provide limited success in reducing mortality, making the identification of additional therapeutic targets mandatory. Chromatin remodeling in cancer has long been studied and related therapeutics are widely used, although less is known about factors with prognostic and therapeutic potential in such areas as gastrointestinal cancers...
February 20, 2024: Journal of Personalized Medicine
https://read.qxmd.com/read/38538531/calculations-of-absolute-free-energies-enthalpies-and-entropies-for-drug-binding
#37
JOURNAL ARTICLE
Christopher M Summa, Dillon P Langford, Sam H Dinshaw, Jennifer Webb, Steven W Rick
Computer simulation methods can aid in the rational design of drugs aimed at a specific target, typically a protein. The affinity of a drug for its target is given by the free energy of binding. Binding can be further characterized by the enthalpy and entropy changes in the process. Methods exist to determine exact free energies, enthalpies, and entropies that are dependent only on the quality of the potential model and adequate sampling of conformational degrees of freedom. Entropy and enthalpy are roughly an order of magnitude more difficult to calculate than the free energy...
March 27, 2024: Journal of Chemical Theory and Computation
https://read.qxmd.com/read/38537579/bet-inhibitor-nanotherapy-halts-kidney-damage-and-reduces-chronic-kidney-disease-progression-after-ischemia-reperfusion-injury
#38
JOURNAL ARTICLE
Maria Laura Saiz, Laura Lozano-Chamizo, Aida Bernardo Florez, Marzia Marciello, Paula Diaz-Bulnes, Viviana Corte-Iglesias, Cristian Ruiz Bernet, Raul R Rodrigues-Diez, Cristina Martin-Martin, Mar Rodriguez-Santamaria, Ivan Fernandez-Vega, Ramon M Rodriguez, Carmen Diaz-Corte, Beatriz Suarez-Alvarez, Marco Filice, Carlos Lopez-Larrea
Targeting epigenetic mechanisms has emerged as a potential therapeutic approach for the treatment of kidney diseases. Specifically, inhibiting the bromodomain and extra-terminal (BET) domain proteins using the small molecule inhibitor JQ1 has shown promise in preclinical models of acute kidney injury (AKI) and chronic kidney disease (CKD). However, its clinical translation faces challenges due to issues with poor pharmacokinetics and side effects. Here, we developed engineered liposomes loaded with JQ1 with the aim of enhancing kidney drug delivery and reducing the required minimum effective dose by leveraging cargo protection...
March 26, 2024: Biomedicine & Pharmacotherapy
https://read.qxmd.com/read/38536949/combination-nano-delivery-systems-remodel-the-immunosuppressive-tumor-microenvironment-for-metastatic-triple-negative-breast-cancer-therapy
#39
JOURNAL ARTICLE
Liya Bai, Hui Liu, Ran You, Xiaoyu Jiang, Tao Zhang, Yunan Li, Tianhe Shan, Zhanyin Qian, Yinsong Wang, Yuanyuan Liu, Chunyu Li
Triple-negative breast cancer (TNBC) is an aggressive type of breast cancer for which effective therapies are lacking. Targeted remodeling of the immunosuppressive tumor microenvironment (TME) and activation of the body's immune system to fight tumors with well-designed nanoparticles have emerged as pivotal breakthroughs in tumor treatment. To simultaneously remodel the immunosuppressive TME and trigger immune responses, we designed two potential therapeutic nanodelivery systems to inhibit TNBC. First, the bromodomain-containing protein 4 (BRD4) inhibitor JQ1 and the cyclooxygenase-2 (COX-2) inhibitor celecoxib (CXB) were coloaded into chondroitin sulfate (CS) to obtain CS@JQ1/CXB nanoparticles (NPs)...
March 27, 2024: Molecular Pharmaceutics
https://read.qxmd.com/read/38534794/exploring-transcriptional-regulation-of-beta-cell-sasp-by-brd4-associated-proteins-and-cell-cycle-control-protein-p21
#40
JOURNAL ARTICLE
Jasmine Manji, Jasmine Pipella, Gabriel Brawerman, Peter J Thompson
Type 1 diabetes (T1D) is a metabolic disease resulting from progressive autoimmune destruction of insulin-producing pancreatic beta cells. Although the majority of beta cells are lost in T1D, a small subset undergoes senescence, a stress response involving growth arrest, DNA damage response, and activation of a senescence-associated secretory phenotype (SASP). SASP in beta cells of the nonobese diabetic (NOD) mouse model of T1D and primary human islets is regulated at the level of transcription by bromodomain extra-terminal (BET) proteins, but the mechanisms remain unclear...
March 6, 2024: Epigenomes
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