https://interresearchia.com/index.php/jmb/issue/feedJournal of Molecular Biology2026-07-23T12:11:11+03:00Open Journal Systems<p><strong data-start="88" data-end="120">Journal of Molecular Biology</strong> is a peer-reviewed international journal dedicated to publishing high-quality research in the field of molecular biology. The journal covers all aspects of molecular structure, function, and dynamics, including studies on proteins, nucleic acids, molecular mechanisms, and cellular processes at the molecular level. <em data-start="437" data-end="467">Journal of Molecular Biology</em> provides a platform for researchers to share original research articles, reviews, and theoretical insights that advance our understanding of the molecular basis of life and support the development of novel biomedical and biotechnological applications.</p>https://interresearchia.com/index.php/jmb/article/view/450Metabolic Profiling of Marine Microorganisms in Bioremediation2026-02-23T17:03:47+02:00Morgan Wilsonadmin@admin.comChris Tayloradmin@admin.comAdrian Rodriguezadmin@admin.com<p>This research investigates the metabolic pathways of marine microorganisms involved in the bioremediation of oceanic pollutants. By profiling these organisms, we aim to identify key metabolic processes that facilitate pollutant degradation. The study highlights the potential of harnessing marine microbiomes for environmental cleanup, providing a sustainable approach to managing marine pollution. Our findings shed light on the complex interactions within microbial communities and their role in maintaining ocean health.</p> <p><strong>This is a free preview. The complete article is available with a valid <a href="https://interresearchia.com/index.php/jmb/login">subscription</a>.</strong></p>2024-08-15T00:00:00+03:00Copyright (c) 2024 Journal of Molecular Biologyhttps://interresearchia.com/index.php/jmb/article/view/944Deciphering the Modulatory Role of RNA-binding Proteins in mRNA Stability Under Oxidative Stress Conditions2026-07-23T12:06:16+03:00Dana Milleradmin@admin.comSkyler Kingadmin@admin.comJamie Harrisadmin@admin.com<p>Oxidative stress is a significant factor affecting mRNA stability, ultimately influencing gene expression and cellular responses. This study investigates the role of RNA-binding proteins (RBPs) in regulating mRNA stability under oxidative stress, utilizing a combination of RNA-sequencing and biochemical assays. Our findings reveal a distinct set of RBPs that predominantly interact with mRNAs under oxidative conditions, facilitating their degradation or stabilization. Notably, we characterize the mechanisms by which specific RBPs modulate the stability of mRNAs encoding stress response proteins. These insights contribute to a deeper understanding of post-transcriptional regulation in response to oxidative stress, highlighting potential therapeutic targets for conditions exacerbated by oxidative damage. Our research underscores the critical interplay between RBPs and mRNA dynamics, paving the way for advances in molecular therapies aimed at enhancing cellular resilience against oxidative stress.</p>2024-08-15T00:00:00+03:00Copyright (c) 2024 Journal of Molecular Biologyhttps://interresearchia.com/index.php/jmb/article/view/448Engineering Protein-Protein Interactions for Drug Discovery2026-02-23T16:52:02+02:00Charlie Woodadmin@admin.comQuinn Davisadmin@admin.comRowan Wrightadmin@admin.com<p>Protein-protein interactions are pivotal in cellular processes and present significant opportunities for therapeutic interventions. This paper investigates current strategies in engineering protein interactions to facilitate drug discovery. By analyzing case studies, we highlight innovative approaches employed in designing small molecules and peptides that inhibit or stabilize protein interactions. The findings underscore the potential of exploiting protein interfaces for therapeutic benefits, offering insights into future research directions.</p> <p><strong>This is a free preview. The complete article is available with a valid <a href="https://interresearchia.com/index.php/jmb/login">subscription</a>.</strong></p>2024-08-15T00:00:00+03:00Copyright (c) 2024 Journal of Molecular Biologyhttps://interresearchia.com/index.php/jmb/article/view/879A Paradigm Shift in Ribosome Profiling: Re-Evaluating the Nonsense-Mediated Decay Pathway through High-Resolution Transcriptomic Landscapes2026-07-15T16:07:57+03:00Skyler Martinadmin@admin.comIsla Halladmin@admin.comKim Wrightadmin@admin.comJordan Smithadmin@admin.com<p>This study critically examines the established concepts within the nonsense-mediated decay (NMD) pathway, a crucial cellular quality control mechanism, utilizing cutting-edge ribosome profiling techniques. Leveraging high-resolution transcriptomic landscapes, we dissect the intricacies of NMD, revealing unprecedented insights into its regulatory dynamics. Our findings suggest significant deviations from traditional mechanistic models, proposing alternative pathways and regulatory elements that challenge existing paradigms. These results not only expand our understanding of NMD but also pave the way for novel therapeutic strategies targeting aberrant gene expression.</p>2024-08-15T00:00:00+03:00Copyright (c) 2024 Journal of Molecular Biologyhttps://interresearchia.com/index.php/jmb/article/view/714The Role of Molecular Chaperones in Protein Homeostasis2026-06-05T10:39:46+03:00Ashley Bakeradmin@admin.comAdrian Leeadmin@admin.comChris Milleradmin@admin.com<p>Molecular chaperones are essential for maintaining protein homeostasis within cells. This article explores their function in assisting protein folding and preventing aggregation, which is crucial for cellular health. Our study provides insights into the mechanisms by which chaperones facilitate proper protein conformation, highlighting their potential therapeutic applications in diseases characterized by protein misfolding.</p>2024-08-15T00:00:00+03:00Copyright (c) 2024 Journal of Molecular Biologyhttps://interresearchia.com/index.php/jmb/article/view/569The Role of Epigenetics in Cancer Progression2026-04-27T14:34:17+03:00Dana Thomasadmin@admin.comPat Allenadmin@admin.comCasey Wrightadmin@admin.com<p>Epigenetic modifications have emerged as key players in cancer development and progression. This review focuses on the molecular mechanisms by which epigenetic changes influence tumorigenesis. We discuss how DNA methylation, histone modification, and non-coding RNAs contribute to cancer cell proliferation and metastasis. Understanding these processes is crucial for developing targeted therapies and improving cancer outcomes.<br><strong>This is a preliminary version. To read the full version of the article, please purchase a subscription.</strong></p>2024-08-15T00:00:00+03:00Copyright (c) 2024 Journal of Molecular Biologyhttps://interresearchia.com/index.php/jmb/article/view/945Elucidating the Role of RNA-Binding Proteins in the Alternative Splicing of Pre-mRNA: A Case Study on Neuronal Development2026-07-23T12:11:11+03:00Robin Jonesadmin@admin.comKai Williamsadmin@admin.comJacob Martinadmin@admin.comRiley Tayloradmin@admin.com<p>RNA-binding proteins (RBPs) play critical roles in the regulation of alternative splicing (AS) of pre-mRNA, a fundamental process influencing gene expression and protein diversity. This study investigates the specific contributions of RBPs to AS during neuronal development using advanced molecular techniques, including RNA sequencing and RBP immunoprecipitation. Our results demonstrate that specific RBPs not only modulate splicing patterns but also impact neuronal differentiation and function. Furthermore, we identify key regulatory networks that involve RBPs and their interaction with splicing factors. Our findings provide insights into the molecular mechanisms governing neuronal development, with implications for understanding neurodevelopmental disorders. This research underscores the importance of RBPs in gene regulation and opens avenues for future investigations into therapeutic strategies targeting AS.</p>2024-08-15T00:00:00+03:00Copyright (c) 2024 Journal of Molecular Biologyhttps://interresearchia.com/index.php/jmb/article/view/449Metabolic Pathways in Cancer Cells: A New Frontier in Oncology2026-02-23T17:00:55+02:00Dana Turneradmin@admin.comCameron Lewisadmin@admin.comCameron Edwardsadmin@admin.com<p>The study delves into the altered metabolic pathways of cancer cells, shedding light on the metabolic reprogramming that supports rapid proliferation and survival in hostile environments. By mapping these pathways, the research identifies potential biomarkers and therapeutic targets that could disrupt cancer growth. This article provides a comprehensive analysis of the metabolic shifts in various cancer types, highlighting the role of enzymes and metabolic intermediates in tumor biology. The findings offer promising directions for developing metabolic-based therapies to combat cancer more effectively and sustainably.</p> <p><strong>This is a free preview. The complete article is available with a valid <a href="https://interresearchia.com/index.php/jmb/login">subscription</a>.</strong></p>2024-08-15T00:00:00+03:00Copyright (c) 2024 Journal of Molecular Biologyhttps://interresearchia.com/index.php/jmb/article/view/880A Paradigm Shift in Understanding Allosteric Interactions within Supramolecular Protein Complexes: Bridging Quantum Mechanisms and Biological Functionality2026-07-15T16:12:32+03:00Pat Robinsonadmin@admin.comDaniel Stewartadmin@admin.comChris Rodriguezadmin@admin.com<p>In recent years, the understanding of allosteric interactions in supramolecular protein complexes has undergone a revolutionary change. This study delves into quantum mechanical approaches to elucidate these interactions, employing advanced spectroscopic methods to observe the corollaries of these interactions. Our findings indicate a significant correlation between quantum mechanistic underpinnings and biological functionalities, suggesting a pivotal role in cellular communication. These results challenge traditional allosteric models, proposing an integrative framework that could redefine molecular biology paradigms.</p>2024-08-15T00:00:00+03:00Copyright (c) 2024 Journal of Molecular Biologyhttps://interresearchia.com/index.php/jmb/article/view/850Cryo-EM-Guided Integrative Cross-Linking Mass Spectrometry Pipeline for Resolving Transient Protein–Protein Interaction Interfaces in Spliceosomal B-Complex Assembly2026-06-25T16:32:09+03:00Jordan Evansadmin@admin.comChris Thomasadmin@admin.comPat Nelsonadmin@admin.com<p>Characterizing transient protein–protein interaction (PPI) interfaces within large ribonucleoprotein assemblies remains a fundamental challenge in structural molecular biology. Here, we present an optimized integrative pipeline combining cryo-electron microscopy (cryo-EM) density-guided docking with isotope-labeled cross-linking mass spectrometry (XL-MS) to resolve low-occupancy contact surfaces in the spliceosomal B-complex. By employing NHS-ester and SSD cross-linkers alongside deuterium-labeled peptide standards, we achieved sub-angstrom constraint precision across 14 inter-subunit interfaces involving U2/U5/U6 snRNP components. Integrative scoring against 3.4 Å cryo-EM maps using Bayesian ensemble refinement identified three previously uncharacterized Prp8–SF3B1 contact regions. This methodology offers a robust, reproducible framework for dissecting dynamic PPI networks in macromolecular complexes, with direct implications for splicing-factor-targeted therapeutic strategies.</p>2024-08-15T00:00:00+03:00Copyright (c) 2024 Journal of Molecular Biologyhttps://interresearchia.com/index.php/jmb/article/view/656Advancements in CRISPR-Cas9 Technology for Genome Editing2026-06-03T14:10:23+03:00Adrian Davisadmin@admin.comAshley Youngadmin@admin.comQuinn Tayloradmin@admin.com<p>CRISPR-Cas9 technology has revolutionized genome editing by providing a precise and efficient method for altering genetic sequences. This article reviews recent advancements in CRISPR-Cas9 applications, highlighting innovations in targeting specificity and delivery methods. We discuss the implications of these advancements for therapeutic applications, including the potential for correcting genetic disorders and improving crop resistance. The ethical considerations and challenges associated with CRISPR-Cas9 technology are also addressed.</p>2024-08-15T00:00:00+03:00Copyright (c) 2024 Journal of Molecular Biology