Galectin-8

A NEW RAT LECTIN, RELATED TO GALECTIN-4 (*)

  1. Yaron R. Hadari(1),
  2. Keren Paz(1),
  3. Roi Dekel(2),
  4. Tomislav Mestrovic(3),
  5. Domenico Accili(4) and
  6. Yehiel Zick(1)(§)
  1. From the (1)Department of Chemical Immunology, the Weizmann Institute of Science, Rehovot 76100, Israel, the
  2. (2)Technion School of Medicine, Haifa 31096, Israel, the
  3. (3)University of Zagreb, School of Medicine, Salata 3b, Zagreb 41000, Croatia, and the
  4. (4)Diabetes Branch, National Institutes of Health, Bethesda, Maryland 20982
  1. § Incumbent of the Philip Harris and Gerald Ronson Career Development Chair in Diabetes Research. To whom correspondence should be addressed. Fax: 972-8-342-380; Lizick{at}weizmann.weizmann.ac.il

Abstract

A protein of 35 kDa which has the characteristic properties of galectins (S-type lectins) was cloned from rat liver cDNA expression library. Since names for galectins 1-7 were already assigned, this new protein was named galectin-8. Three lines of evidence demonstrate that galectin-8 is indeed a novel galectin: (i) its deduced amino acid sequence contains two domains with conserved motifs that are implicated in the carbohydrate binding of galectins, (ii) in vitro translation products of galectin-8 cDNA or bacterially expressed recombinant galectin-8 are biologically active and possess sugar binding and hemagglutination activity, and (iii) a protein of the expected size (34 kDa) that binds to lactosyl-Sepharose and reacts with galectin-8-specific antibodies is present in rat liver and comprises Graphic0.025% of the total Triton X-100-soluble hepatic proteins. Overall, galectin-8 is structurally related (34% identity) to galectin-4, a soluble rat galectin with two carbohydrate-binding domains in the same polypeptide chain, joined by a link peptide. Nonetheless, several important features distinguish these two galectins: (i) Northern blot analysis revealed that, unlike galectin-4 that is confined to the intestine and stomach, galectin-8 is expressed in liver, kidney, cardiac muscle, lung, and brain; (ii) unlike galectin-4, but similar to galectins-1 and −2, galectin-8 contains 4 Cys residues; (iii) the link peptide of galectin-8 is unique and bears no similarity to any known protein; (iv) the N-terminal carbohydrate-binding region of galectin-8 contains a unique WG-E-I motif instead of the consensus WG-E-R/K motif implicated as playing an essential role in sugar-binding of all galectins. Together with galectin-4, galectin-8 therefore represents a subfamily of galectins consisting of a tandem repeat of structurally different carbohydrate recognition domains within a single polypeptide chain.

Footnotes

  • * The costs of publication of this article were defrayed in part by the payment of page charges. This article must therefore by hereby marked “advertisement” in accordance with 18 U.S.C. Section 1734 solely to indicate this fact.

    The nucleotide sequence(s) reported in this paper has been submitted to the GenBank™/EMBL Data Bank with accession number(s) U09824[GenBank].

  • 1 The abbreviations used are:

    CRD

    carbohydrate recognition domain

    IRS-1

    insulin receptor substrate-1

    GST

    glutathione S-transferase

    PCR

    polymerase chain reaction

    PAGE

    polyacrylamide gel electrophoresis

    r-galectin-8

    recombinant galectin-8.

  • 2 Y. R. Hadari, K. Paz, R. Dekel, T. Mestrovic, D. Accili, and Y. Zick, unpublished results.

    • Received October 17, 1994.
    • Revision received December 7, 1994.
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