Enter a sentence, or cut and paste a paragraph

Refine

Refine

Refine to these subject areas:

  • Select All | Select None

Advanced Filters »

Refine

  • Advanced Filters:

  • to
  • Specific Data Sources:

    All Edit

    Select All  |  Select None

Reset filters

Bookmark

Dimerization of Kit-ligand and efficient cell-surface presentation requires a conserved Ser-Gly-Gly-Tyr motif in its transmembrane domain

To view this document, you will need to have Adobe Flash Player 10 or above installed.
Please click here to install.

Kit-ligand (Kitl), also known as stem cell factor, is a membrane-anchored, noncovalently bound dimer signaling via the c-kit receptor tyrosine kinase, required for migration, survival, and proliferation of hematopoietic stem and germ cells, melanocytes, and mastocytes. Despite its fundamental role in morphogenesis and stem cell biology, the mechanisms that regulate Kitl dimerization are not well understood. By employing cell-permeable cross-linker and quantitative bimolecular fluorescence complementation of wild-type and truncated forms of Kitl, we determined that Kitl dimerization is initiated in the endoplasmic reticulum and mediated to similar levels by the transmembrane and the extracellular growth factor domain. Further biochemical and mutational analysis revealed a conserved Ser-Gly-Gly-Tyr-containing motif that is required for transmembrane domain dimerization and efficient cell-surface expression of Kitl. A novel intracellular capture assay with the Kitl transmembrane domain as bait revealed specific interactions with Kitl, but not with unrelated transmembrane proteins. During evolution, the transmembrane dimerization motif appeared in Kitl at the transition from teleosts to tetrapods, which correlates with the emergence of Kitl as a supporter of stem cell populations. Thus, transmembrane-mediated association of membrane-anchored growth factors consists of a novel mechanism to improve paracrine signaling and morphogenesis.—Paulhe, F., Wehrle-Haller, M., Jacquier, M.-C., Imhof, B. A., Tabone-Eglinger, S., Wehrle-Haller, B. Dimerization of Kit-ligand and efficient cell-surface presentation requires a conserved Ser-Gly-Gly-Tyr motif in its transmembrane domain.

To view this document, you will need to have Adobe Flash Player 10 or above installed.
Please click here to install.

This is a preview. The total pages displayed will be limited.

Rent for $0.99 FREE

Login

It seems like you have an account, please login to rent this article

Forgot your password?

Don't have an account yet? Sign up now!

To view the full-text of this article, sign up for a free DeepDyve account below.

A free Basic account also comes with
3 free rentals to help get you started.

It seems like you have an account, please login to rent this article

Just 30 seconds to go! Please check your inbox for a confirmation email to activate your account, then start using your 3 FREE rentals.

Learn more Existing user? Login here

Article Details
Paulhe, Frederique; Wehrle-Haller, Monique; Jacquier, Marie-Claude; Imhof, Beat A.; Tabone-Eglinger, Severine; Wehrle-Haller, Bernhard
The FASEB Journal , Volume 23 (9): 3037
Fed of American Socs for Experimental BiologySep 1, 2009
More Info

More Like This Article

View All dataSource[]=aspet&dataSource[]=aacc&dataSource[]=aacr&dataSource[]=aip&dataSource[]=ajnr&dataSource[]=appi_book&dataSource[]=appi_journal&dataSource[]=asip&dataSource[]=asm&dataSource[]=asn&dataSource[]=aspb&dataSource[]=annual_reviews&dataSource[]=arxiv&dataSource[]=acm&dataSource[]=clinical_trials&dataSource[]=dailymed&dataSource[]=degruyter&dataSource[]=elsevier&dataSource[]=emerald&dataSource[]=emea&dataSource[]=epo&dataSource[]=faseb&dataSource[]=gsa&dataSource[]=health_affairs&dataSource[]=hindawi&dataSource[]=imedpub&dataSource[]=iucr&dataSource[]=iospress&dataSource[]=jbjs&dataSource[]=mesharpe&dataSource[]=mary_ann_liebert&dataSource[]=medline&dataSource[]=mit_press&dataSource[]=oxford&dataSource[]=pnas&dataSource[]=psyc_articles&dataSource[]=psyc_books&dataSource[]=psyc_critiques&dataSource[]=plos_journal&dataSource[]=pubmed_central&dataSource[]=rsna&dataSource[]=rockefeller&dataSource[]=sage&dataSource[]=spie&dataSource[]=springer&dataSource[]=taylor_francis&dataSource[]=aps&dataSource[]=the_scientist&dataSource[]=uc_press&dataSource[]=uspto_abstract&dataSource[]=pct

Browse: Subject Areas | Journals | Publishers

Bookmark an Article

To bookmark an article, please log in first, or sign up for a DeepDyve account if you don't already have one.

OK

Subscribe to Journal Email Alerts

To subscribe to email alerts, please log in first, or sign up for a DeepDyve account if you don't already have one.

OK