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Updated: Aug 14, 2026

A Protocol for the Production of KLRG1 Tetramer
Published on: January 13, 2010
Leukocytes express a novel gene encoding a putative transmembrane protein-kinase devoid of an extracellular domain
1Lautenberg Center for General & Tumor Immunology, Hebrew University-Hadassah Medical School, Jerusalem, Israel.
Abstract:
Tyrosine-specific phosphorylation of proteins is a key to the control of diverse pathways leading to cell growth and differentiation. The protein-tyrosine kinases described to date are either transmembrane proteins having an extracellular ligand binding domain or cytoplasmic proteins related to the v-src oncogene. Most of these proteins are expressed in a wide variety of cells and tissues; few are tissue-specific. Previous studies have suggested that lymphokines could mediate haematopoietic cell survival through their action on glucose transport, regulated in some cells through the protein-tyrosine kinase activity of the insulin receptor. We have investigated the possibility that insulin receptor-like genes are expressed specifically in haematopoietic cells. Using the insulin receptor-related avian sarcoma oncogene v-ros as a probe, we have isolated and characterized the complementary DNA of a novel gene, ltk (leukocyte tyrosine kinase). The ltk gene is expressed mainly in leukocytes, is related to several tyrosine kinase receptor genes of the insulin receptor family and has unique structural properties: it apparently encodes a transmembrane protein devoid of an extracellular domain. Two candidate ltk proteins have been identified with antibodies in the mouse thymus, and have properties indicating that they are integral membrane proteins. These features suggest that ltk could be a signal transduction subunit for one or several of the haematopoietic receptors.
Insights
Researchers discovered a novel leukocyte tyrosine kinase (ltk) gene, primarily expressed in leukocytes. This transmembrane protein, lacking an extracellular domain, may function as a signal transduction subunit for hematopoietic receptors.
Area of Science:
- Molecular Biology
- Cell Signaling
- Immunology
Background:
- Protein-tyrosine kinases control cell growth and differentiation.
- Most known tyrosine kinases are widely expressed, unlike tissue-specific ones.
- Lymphokines may regulate hematopoietic cell survival via glucose transport and insulin receptor activity.
Purpose of the Study:
- Investigate expression of insulin receptor-like genes in hematopoietic cells.
- Isolate and characterize a novel gene potentially involved in leukocyte signaling.
Main Methods:
- Used the v-ros oncogene as a probe to screen for related genes.
- Isolated and characterized the complementary DNA of the ltk gene.
- Utilized antibodies to identify ltk proteins in mouse thymus.
Main Results:
- Identified a novel gene, ltk (leukocyte tyrosine kinase), mainly expressed in leukocytes.
- ltk is related to insulin receptor tyrosine kinase family but lacks an extracellular domain.
- Two candidate ltk proteins were identified as integral membrane proteins in mouse thymus.
Conclusions:
- ltk is a novel, leukocyte-specific tyrosine kinase.
- Its unique structure suggests a role as a signal transduction subunit for hematopoietic receptors.
- This finding opens new avenues for understanding immune cell signaling pathways.
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