LIVER-INTESTINE CADHERIN - MOLECULAR-CLONING AND CHARACTERIZATION OF A NOVEL CA2+-DEPENDENT CELL-ADHESION MOLECULE EXPRESSED IN LIVER AND INTESTINE

被引:164
作者
BERNDORFF, D
GESSNER, R
KREFT, B
SCHNOY, N
LAJOUSPETTER, AM
LOCH, N
REUTTER, W
HORTSCH, M
TAUBER, R
机构
[1] FREE UNIV BERLIN, UNIV KLINIKUM RUDOLF VIRCHOW, INST KLIN CHEM & BIOCHEM, D-14050 BERLIN, GERMANY
[2] FREE UNIV BERLIN, UNIV KLINIKUM RUDOLF VIRCHOW, INST PATHOL, D-14050 BERLIN, GERMANY
[3] FREE UNIV BERLIN, INST MOLEK BIOL & BIOCHEM, D-14195 BERLIN, GERMANY
[4] UNIV MICHIGAN, DEPT ANAT & CELL BIOL, ANN ARBOR, MI 48109 USA
关键词
D O I
10.1083/jcb.125.6.1353
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
A novel member of the cadherin family of cell adhesion molecules has been characterized by cloning from rat liver, sequencing of the corresponding cDNA, and functional analysis after heterologous expression in nonadhesive S2 cells. cDNA clones were isolated using a polyclonal antibody inhibiting Ca2+-dependent intercellular adhesion of hepatoma cells. As inferred from the deduced amino acid sequence, the novel molecule has homologies with E-, P-, and N-cadherins, but differs from these classical cadherins in four characteristics. Its extracellular domain is composed of five homologous repeated domains instead of four characteristic for the classical cadherins. Four of the five domains are characterized by the sequence motifs DXNDN and DXD or modifications thereof representing putative Ca2+-binding sites of classical cadherins. In its NH2-terminal region, this cadherin lacks both the precursor segment and the endogenous protease cleavage site RXKR found in classical cadherins. In the extracellular EC1 domain, the novel cadherin contains an AAL sequence in place of the HAV sequence motif representing the common cell adhesion recognition sequence of E-, P-, and N-cadherin. In contrast to the conserved cytoplasmic domain of classical cadherins with a length of 150-160 amino acid residues, that of the novel cadherin has only 18 amino acids. Examination of transfected S2 cells showed that despite these structural differences, this cadherin mediates intercellular adhesion in a Ca2+-dependent manner. The novel cadherin is solely expressed in liver and intestine and was, hence, assigned the name LI-cadherin. In these tissues, LI-cadherin is localized to the basolateral domain of hepatocytes and enterocytes. These results suggest that LI-cadherin represents a new cadherin subtype and may have a role in the morphological organization of liver and intestine.
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页码:1353 / 1369
页数:17
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