Contents
Molecular Biology
Vol. 59, No. 5, 2025
REVIEWS
Analogs and Conjugates of Natural Proline-Arginine-Rich Antimicrobial Peptides: Application Potential
p. 627 abstract
Zinc-Dependent Histone Deacetylase (HDAC) Inhibitors: Therapeutic Potential, Pharmacophore Structure, and Methods for Testing Deacylase Activity
p. 668 abstract
Genetic Aspects of the Application of Tissue-Engineered Constructs in Regenerative Therapy in Cardiology: An Analytical Review
p. 691 abstract
GENOMICS: TRANSCRIPTOMICS
A Localized GTEx Database and Its Potential Applications in Biomedical Research
p. 707 abstract
CELL MOLECULAR BIOLOGY
IFNγ Upregulating miR-1291 Promotes Cell Proliferation and Enhances Phosphorylation of the JAK/STAT Signaling Pathway by Targeting SOCS3 in HepG2 Cells
p. 729 abstract
Spatial Organization of Chromatin of ZEB1 Gene Promoter Region in Pancreatic Ductal Adenocarcinoma Cells
p. 748 abstract
STM2457 is Therapeutic for Idiopathic Pulmonary Fibrosis by Inhibiting the METTL3-CTGF Signaling Axis
p. 763 abstract
OLR1 Knockdown Mitigates Traumatic-Hemorrhagic Shock-Induced Liver Injury by Inhibiting the TLR4/MYD88 Pathway and NLRP3 Inflammasome Activation
p. 772 abstract
Chrysin Boosts the Cell Death and Anticancer Actions of Doxorubicin by Stimulating the TRPM2 Channel in Glioblastoma Cells
p. 784 abstract
MOLECULAR CELL BIOLOGY
Amidothiazole Derivatives of (+)-Usnic Acid Effectively Inhibit TDP1 and Sensitize Tumor Cells to the Effects of Topotecan
p. 795 abstract
Coordinated Expression and Methylation of microRNAs: Role in Common Biological Processes and Signaling Pathways in Breast Cancer
p. 805 abstract
STRUCTURAL-FUNCTIONAL ANALYSIS OF BIOPOLYMERS AND THEIR COMPLEXES
Substrate Specificity of E. coli Purine Nucleoside Phosphorylase in Phosphorolysis of Purine Ribonucleosides Containing a Cyclic Terpene Fragment
p. 817 abstract
BIOINFORMATICS
GeneLens: A Python Package Implementing Monte Carlo Machine Learning and Network Analysis Methods for Biomarker Discovery and Gene Functional Annotation
p. 827 abstract
PROTEOMICS
Prediction of New Nε-Acetylation Sites in the Human Proteome Based on Molecular Multilevel Neighborhoods of Atom Descriptors
p. 836 abstract

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