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Open AccessJournal ArticleDOI

Identification of a gene at 11q23 encoding a guanine nucleotide exchange factor: evidence for its fusion with MLL in acute myeloid leukemia.

TLDR
Analysis of the predicted protein sequence indicates that it has strong homology to several members of the family of Rho GEFs that includes such oncogenes as Dbl, Vav, Tiam, and Bcr, and LARG represents an additional member of the GEF family and a novel MLL fusion partner in acute myeloid leukemia.
Abstract
We have identified a gene at 11q23, telomeric to MLL, that encodes a guanine nucleotide exchange factor (GEF). This gene is transcribed into a 9.5-kb mRNA containing a 4.6-kb ORF. By Northern analysis, it was found to be expressed in all human tissues examined including peripheral blood leukocytes, spleen, prostate, testis, ovary, small intestine, colon, and minimally in thymus. Analysis of the predicted protein sequence indicates that it has strong homology to several members of the family of Rho GEFs that includes such oncogenes as Dbl, Vav, Tiam, and Bcr. A patient with primary acute myeloid leukemia (AML) and a karyotype of 51,XY,+8,+19,+3mar was found to have the 5′ end of MLL at exon 6 fused in-frame with the 3′ end of almost the entire ORF of this gene, which we named LARG for leukemia-associated Rho GEF. Transcriptional orientation of both genes at 11q23 is from centromere to telomere, consistent with other data that suggest the MLL-LARG fusion resulted from an interstitial deletion rather than a balanced translocation. LARG does not appear to have any homology with other MLL partner genes reported thus far. Thus, LARG represents an additional member of the GEF family and a novel MLL fusion partner in acute myeloid leukemia.

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Ca2+ Sensitivity of Smooth Muscle and Nonmuscle Myosin II: Modulated by G Proteins, Kinases, and Myosin Phosphatase

TL;DR: It is suggested that the RhoA/ROK pathway is constitutively active in a number of organs under physiological conditions; its aberrations play major roles in several disease states, particularly impacting on Ca2+ sensitization of smooth muscle in hypertension and possibly asthma and on cancer neoangiogenesis and cancer progression.
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GEF means go: turning on RHO GTPases with guanine nucleotide-exchange factors

TL;DR: With 69 distinct homologues, Dbl-related GEFs represent the largest family of direct activators of Rho GTPases in humans, and they activate RhoGTPases within particular spatio-temporal contexts.
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RHO-GTPases and cancer.

TL;DR: The RAS oncogenes are members of a large family of small GTPases that bind GTP and hydrolyse it to GDP and the switching between these two states regulates a wide range of cellular processes.
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The impact of translocations and gene fusions on cancer causation

TL;DR: An analysis of available data shows that gene fusions occur in all malignancies, and that they account for 20% of human cancer morbidity, with the advent of new and powerful investigative tools that enable the detection of cytogenetically cryptic rearrangements.
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Guanine nucleotide exchange factors for Rho GTPases: turning on the switch

TL;DR: All the evidence points to GEFs being the critical mediators of Rho GTPase activation, and this paper reviews the present understanding of how they do this.
References
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Book

Molecular Cloning: A Laboratory Manual

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