BiotechnologyHealthcareResearch

Breakthrough Epigenetic Editing Enables Durable Gene Silencing in Human T Cells Without DNA Damage

Researchers have demonstrated a new epigenetic editing approach that provides durable gene silencing in primary human T cells without causing DNA damage. The technology, called CRISPRoff, maintains gene repression through multiple cell divisions and shows minimal cellular toxicity compared to traditional CRISPR-Cas9 methods. This breakthrough could significantly advance cell therapy development and genetic research applications.

Revolutionary Epigenetic Editing Platform

Scientists have developed a groundbreaking epigenetic editing technology that can permanently silence genes in human immune cells without altering the underlying DNA sequence, according to research published in Nature Biotechnology. The approach, reportedly called CRISPRoff, enables durable gene repression that persists through approximately 30-80 cell divisions, representing a significant advancement over previous temporary gene silencing methods.

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Breakthrough Study Reveals Novel Protein Regulating Malaria Parasite’s Key Survival Mechanism

Researchers have determined the first endogenous structure of PfATP4, a crucial malaria parasite protein. The study reveals an unexpected companion protein that appears essential for parasite survival and drug resistance mechanisms.

Structural Breakthrough in Malaria Research

Scientists have achieved a significant milestone in understanding malaria parasite biology by determining the first endogenous structure of PfATP4, according to recent reports. The research, conducted using cryogenic electron microscopy at 3.7 Ångström resolution, reveals unprecedented details about this crucial antimalarial target isolated directly from parasite-infected human red blood cells.