|  Help  |  About  |  Contact Us

Publication : Chromosomal assignment of four testis-expressed mouse genes from a new family of transmembrane proteins (ADAMs) involved in cell-cell adhesion and fusion.

First Author  Cho C Year  1996
Journal  Genomics Volume  34
Issue  3 Pages  413-7
PubMed ID  8786143 Mgi Jnum  J:33860
Mgi Id  MGI:81353 Doi  10.1006/geno.1996.0305
Citation  Cho C, et al. (1996) Chromosomal assignment of four testis-expressed mouse genes from a new family of transmembrane proteins (ADAMs) involved in cell-cell adhesion and fusion. Genomics 34(3):413-7
abstractText  A new gene family of multidomain membrane proteins (ADAMs) that include A Disintegrin And Metalloprotease domain comprises an increasing number of identified members. Two members of this family, fertilin alpha and fertilin beta, form a heterodimeric protein that is required for sperm- egg fusion. Most recently, it has been shown that a third family member, meltrin alpha, is involved in myoblast fusion (Yagami-Hiromasa et al., 1995, Nature 377: 652- 656). Using restriction fragment length polymorphism analysis of a DNA panel from an interspecific backcross, we have determined the chromosomal locations of four mouse genes of this family that are expressed in testis: fertilin alpha, fertilin beta, ADAM 4, and ADAM 5, These genes have been given the locus symbols Ftna (fertilin alpha), Ftnb (fertilin beta), Adam4 (ADAM 4), and Adam5 (ADAM 5). They were mapped to chromosomes 5, 14, 9, and 8, respectively, revealing a dispersed localization. Human chromosome locations of these genes are predicted on the basis of the mapping results using the information provided by comparative linkage maps, Because all four of these ADAM genes are expressed in testis and fertilin a and beta have been found to be important for fertilization, we compared their chromosomal locations with known mouse mutations affecting spermatogenesis and fertility. (C) 1996 Academic Press, Inc.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

24 Bio Entities

Trail: Publication

0 Expression