rajiv_kumar

Research

Mechanosensors, and Mechanosensing: Mechanosensation, a Perception of the Force and Response

Article June 4, 2021

According to the law of motion, reflex or a reflex action is an uncontrollable phenomenon in response to any induced forces. The same also applies to the cellular processes. Force and response are the two factors of a perception that generates mechanical force and alter cellular behaviors. This phenomenon defined as mechanosensing. Here. The mechanical force originates changes in the conformation of mechanosensory and heaved extracellular matrix or cytoskeletons toward mechanical force.1 The mechanical force-driven tension instigated in a lipid bilayer and initiated conformational changes in the entrenched sensors. The process of mechanotransduction, cell response toward a mechanical force, translated conformational changes that were generated via mechanical force into a signal having a biochemical message.2 Overall, mechanosensory are molecules that perform interactions or enzymatic events and can directly sense mechanical dynamics.3

DNA Looping Initiating Types of Machinery of Transcription, Recombination, and Replication: An Experimental, and Theoretical Insight

Article May 30, 2021

Topological DNA assemblies governed biological processes, physical manipulations, compartmentalization, transfer genetic information by sequence, participates in molecular mechanisms of formation and deformation of biological processes, and even chromosome territory formation, including replication, transcription, and gene regulation via dynamic assets and variations.[1] The sequencing processes deal with DNA mechanical code and leave impacts on gene regulation via nucleosome positioning. Therefore, a proper analysis could predict the mechanical route of DNA sequencing and how it does influence loop creation. The earlier mentioned predictions testified via in-vivo transcription and in-vitro single-molecule assays. These styles of elucidation based on theoretical investigations of various cellular routes of biological processes such as sequence-dependent features of DNA, a specific sequence creation in the chromatin structure, and interfaces of protein and DNA molecules.