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Updated: Feb 17, 2026

Detection of Small GTPase Prenylation and GTP Binding Using Membrane Fractionation and GTPase-linked Immunosorbent Assay
Published on: November 11, 2018
RAL GTPases: Biology and Potential as Therapeutic Targets in Cancer
1State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, Nanjing, China (C.Y.); Departments of Surgery (Urology) and Pharmacology, University of Colorado, Aurora, Colorado (D.T.); and University of Colorado Comprehensive Cancer Center, Aurora, Colorado (D.T.).
Abstract:
More than a hundred proteins comprise the RAS superfamily of small GTPases. This family can be divided into RAS, RHO, RAB, RAN, ARF, and RAD subfamilies, with each shown to play distinct roles in human cells in both health and disease. The RAS subfamily has a well-established role in human cancer with the three genes, HRAS, KRAS, and NRAS being the commonly mutated in tumors. These RAS mutations, most often functionally activating, are especially common in pancreatic, lung, and colorectal cancers. Efforts to inhibit RAS and related GTPases have produced inhibitors targeting the downstream effectors of RAS signaling, including inhibitors of the RAF-mitogen-activated protein kinase/extracellular signal-related kinase (ERK)-ERK kinase pathway and the phosphoinositide-3-kinase-AKT-mTOR kinase pathway. A third effector arm of RAS signaling, mediated by RAL (RAS like) has emerged in recent years as a critical driver of RAS oncogenic signaling and has not been targeted until recently. RAL belongs to the RAS branch of the RAS superfamily and shares a high structural similarity with RAS. In human cells, there are two genes, RALA and RALB, both of which have been shown to play roles in the proliferation, survival, and metastasis of a variety of human cancers, including lung, colon, pancreatic, prostate, skin, and bladder cancers. In this review, we summarize the latest knowledge of RAL in the context of human cancer and the recent advancements in the development of cancer therapeutics targeting RAL small GTPases.
Insights
The RAL GTPase pathway is a critical driver of cancer, distinct from previously targeted RAS pathways. Recent therapeutic advancements now focus on inhibiting RAL proteins for cancer treatment.
Area of Science:
- Molecular biology
- Oncology
- Biochemistry
Background:
- The RAS superfamily of small GTPases includes over a hundred proteins involved in cellular functions.
- RAS subfamily mutations (HRAS, KRAS, NRAS) are prevalent in pancreatic, lung, and colorectal cancers.
- Current cancer therapies target downstream RAS effectors like ERK and AKT pathways.
Purpose of the Study:
- To review the role of RAL GTPases in human cancer.
- To summarize recent advancements in developing cancer therapeutics targeting RAL.
Main Methods:
- Literature review of studies on RAL GTPases in cancer.
- Analysis of current therapeutic strategies targeting RAL signaling.
Main Results:
- RAL GTPases (RALA, RALB) are crucial drivers of proliferation, survival, and metastasis in various cancers.
- RAL represents a distinct effector arm of RAS signaling.
- Targeting RAL is a recent but promising therapeutic approach.
Conclusions:
- RAL GTPases are critical oncogenic drivers and viable therapeutic targets.
- Developing novel cancer therapeutics targeting RAL is an emerging area of research.
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