Hras Nras Kras

HRAS, NRAS, and KRAS are closely related genes that encode Ras small GTPase proteins, which regulate cell growth, survival, differentiation, and other essential biological processes. Ras proteins act as molecular switches by cycling between an inactive GDP-bound state and an active GTP-bound state; signals from cell-surface receptors stimulate nucleotide exchange, while intrinsic and assisted GTP hydrolysis terminates signaling. Mutations that impair this cycle can maintain Ras in its active state and drive abnormal proliferation. Studying these genes helps explain developmental pathways and cancer biology, supports the classification of tumors, and informs efforts to develop targeted therapies against Ras-driven disease.

Hras Nras Kras - Related Videos

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JoVE EoE - Viral Growth and Techniques

Establishing a Murine Tumor Cell Line In Vitro Using a Virus-Cas9 System

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2026

Source: Prasad, M. et al. In Vitro Establishment of a Genetically Engineered Murine Head and Neck Cancer Cell Line using an Adeno-Associated Virus-Cas9 System. J. Vis. Exp. (2020)This video demonstrates the in vitro transformation of murine epithelial cells through viral delivery of Cre recombinase and mutation-inducing components. It outlines the steps for Cas9 activation, cancer-gene modification, and the establishment of a tumorigenic murine cell line.

Nitrogen Cavitation and Differential Centrifugation Allows for Monitoring the Distribution of Peripheral Membrane Proteins in Cultured Cells

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Cited by 15 •

2017

Here we present protocols for detergent-free homogenization of cultured mammalian cells based on nitrogen cavitation and subsequent separation of cytosolic and membrane-bound proteins by ultracentrifugation. This method is ideal for monitoring the partitioning of peripheral membrane proteins between soluble and membrane fractions.

Transposon Mediated Integration of Plasmid DNA into the Subventricular Zone of Neonatal Mice to Generate Novel Models of Glioblastoma

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Cited by 44 •

2015

Here we describe an efficient and versatile protocol to induce, monitor and analyze novel glioblastomas (GBM) using transposon DNA injected into the ventricles of neonatal mice. Cells of the subventricular zone, which take up the plasmid, transform, proliferate and generate tumors with histo-pathological characteristics of human GBM.

A Multiplexed Luciferase-based Screening Platform for Interrogating Cancer-associated Signal Transduction in Cultured Cells

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Cited by 6 •

2013

Achieving a systems level understanding of cellular processes is a goal of modern-day cell biology. We describe here strategies for multiplexing luciferase reporters of various cellular function end-points to interrogate gene function using genome-scale RNAi libraries.

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JoVE Journal - Cancer Research
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Multianimal Magnetic Resonance Imaging for Tumor Measurements in Pancreatic Cancer Mouse Models

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2026

This protocol uses a multichamber bed for parallel magnetic resonance imaging (MRI) of up to four animals to detect pancreatic adenocarcinoma tumors in genetically engineered mouse models. This multianimal MRI protocol is fast and cost-effective for detecting and measuring tumors, facilitating animal selection for preclinical studies and longitudinal monitoring of tumor growth.

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