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Differential expression and processing of two cell associated forms of the kit-ligand: KL-1 and KL-2
1Program in Molecular Biology, Sloan Kettering Institute, New York, New York 10021.
Abstract:
The c-kit ligand, KL, and its receptor, the proto-oncogene c-kit are encoded, respectively, at the steel (Sl) and white spotting (W) loci of the mouse. Both Sl and W mutations affect cellular targets in melanogenesis, gametogenesis, and hematopoiesis during development and in adult life. Although identified as a soluble protein, the predicted amino acid sequence of KL indicates that it is an integral transmembrane protein. We have investigated the relationship between the soluble and the cell associated forms of KL and the regulation of their expression. We show that the soluble form of KL is generated by efficient proteolytic cleavage from a transmembrane precursor, KL-1. An alternatively spliced version of KL-1, KL-2, in which the major proteolytic cleavage site is removed by splicing, is shown to produce a soluble biologically active form of KL as well, although with somewhat diminished efficiency. The protein kinase C inducer phorbol 12-myristate 13-acetate and the calcium ionophore A23187 were shown to induce the cleavage of both KL-1 and KL-2 at similar rates, suggesting that this process can be regulated differentially. Furthermore, proteolytic processing of both the KL-1 and KL-2 transmembrane protein products was shown to occur on the cell surface. The relative abundance of KL-1 and KL-2 is controlled in a tissue-specific manner. Sld, a viable steel allele, is shown to encode a biologically active secreted mutant KL protein. These results indicate an important function for both the soluble and the cell associate form of KL. The respective roles of the soluble and cell associated forms of KL in the proliferative and migratory functions of c-kit are discussed.
Insights
The study reveals that the soluble form of the c-kit ligand (KL) is produced by proteolytic cleavage from a transmembrane precursor. This cleavage process, occurring on the cell surface, can be differentially regulated, impacting cell proliferation and migration.
Area of Science:
- Molecular Biology
- Developmental Biology
- Cell Biology
Background:
- The c-kit ligand (KL) and its receptor c-kit are crucial for melanogenesis, gametogenesis, and hematopoiesis.
- KL was identified as a soluble protein, but its sequence suggests it's a transmembrane protein.
Purpose of the Study:
- To investigate the relationship between soluble and cell-associated forms of KL.
- To understand the regulation of KL expression and processing.
Main Methods:
- Analysis of KL precursor forms (KL-1 and KL-2) and their processing.
- Use of phorbol 12-myristate 13-acetate and calcium ionophore A23187 to induce cleavage.
- Investigation of tissue-specific expression and a viable steel allele (Sld).
Main Results:
- Soluble KL is generated by efficient proteolytic cleavage of transmembrane precursor KL-1.
- An alternatively spliced form, KL-2, also yields soluble KL via cleavage, albeit less efficiently.
- Cleavage occurs on the cell surface and can be differentially regulated; Sld encodes a secreted KL mutant.
Conclusions:
- Both soluble and cell-associated forms of KL play significant roles.
- The processing and regulation of KL are critical for the functions of c-kit, including proliferation and migration.