STRUCTURAL AND FUNCTIONAL-ASPECTS OF THE MULTIPLICITY OF NEU DIFFERENTIATION FACTORS

被引:242
作者
WEN, DZ [1 ]
SUGGS, SV [1 ]
KARUNAGARAN, D [1 ]
LIU, NL [1 ]
CUPPLES, RL [1 ]
LUO, Y [1 ]
JANSSEN, AM [1 ]
BENBARUCH, N [1 ]
TROLLINGER, DB [1 ]
JACOBSEN, VL [1 ]
MENG, SY [1 ]
LU, HS [1 ]
HU, S [1 ]
CHANG, D [1 ]
YANG, WN [1 ]
YANIGAHARA, D [1 ]
KOSKI, RA [1 ]
YARDEN, Y [1 ]
机构
[1] WEIZMANN INST SCI,DEPT CHEM IMMUNOL,IL-76100 REHOVOT,ISRAEL
关键词
D O I
10.1128/MCB.14.3.1909
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We used molecular cloning and functional analyses to extend the family of Neu differentiation factors (NDFs) and to explore the biochemical activity of different NDF isoforms. Exhaustive cloning revealed the existence of six distinct fibroblastic pro-NDFs, whose basic transmembrane structure includes an immunoglobulin-like motif and an epidermal growth factor (EGF)-like domain. Structural variation is confined to three domains: the C-terminal portion of the EGF-like domain (isoforms alpha and beta), the adjacent juxtamembrane stretch (isoforms I to 4), and the variable-length cytoplasmic domain (isoforms a, b, and c). Only certain combinations of the variable domains exist, and they display partial tissue specificity in their expression: pro-NDF-alpha 2 is the predominant form in mesenchymal cells, whereas pro-NDF-beta 1 is the major neuronal isoform. Only the transmembrane isoforms were glycosylated and secreted as biologically active 44-kDa glycoproteins, implying that the transmembrane domain functions as an internal signal peptide. Extensive glycosylation precedes proteolytic cleavage of pro-NDF but has no effect on receptor binding. By contrast; the EGF-like domain fully retains receptor binding activity when expressed separately, but its beta-type C terminus displays higher affinity than alpha-type NDFs. Likewise, structural heterogeneity of the cytoplasmic tails may determine isoform-specific rate of pro-NDF processing. Taken together, these results suggest that different NDF isoforms are generated by alternative splicing and perform distinct tissue-specific functions.
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页码:1909 / 1919
页数:11
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