Title of article :
LIV-1 ZIP Ectodomain Shedding in Prion-Infected Mice Resembles Cellular Response to Transition Metal Starvation
Author/Authors :
Sepehr Ehsani، نويسنده , , Ashkan Salehzadeh، نويسنده , , Hairu Huo، نويسنده , , William Reginold، نويسنده , , Cosmin L. Pocanschi، نويسنده , , Hezhen Ren، نويسنده , , Hansen Wang، نويسنده , , Kelvin So، نويسنده , , Christine Sato، نويسنده , , Mohadeseh Mehrabian، نويسنده , , Robert Strome، نويسنده , , William S. Trimble، نويسنده , , Lili-Naz Hazrati، نويسنده , , Ekaterina Rogaeva، نويسنده , , David Westaway، نويسنده , , George A. ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
19
From page :
556
To page :
574
Abstract :
We recently documented the co-purification of members of the LIV-1 subfamily of ZIP (Zrt‐, Irt‐like Protein) zinc transporters (LZTs) with the cellular prion protein (PrPC) and, subsequently, established that the prion gene family descended from an ancestral LZT gene. Here, we begin to address whether the study of LZTs can shed light on the biology of prion proteins in health and disease. Starting from an observation of an abnormal LZT immunoreactive band in prion-infected mice, subsequent cell biological analyses uncovered a surprisingly coordinated biology of ZIP10 (an LZT member) and prion proteins that involves alterations to N-glycosylation and endoproteolysis in response to manipulations to the extracellular divalent cation milieu. Starving cells of manganese or zinc, but not copper, causes shedding of the N1 fragment of PrPC and of the ectodomain of ZIP10. For ZIP10, this posttranslational biology is influenced by an interaction between its PrP-like ectodomain and a conserved metal coordination site within its C-terminal multi-spanning transmembrane domain. The transition metal starvation-induced cleavage of ZIP10 can be differentiated by an immature N-glycosylation signature from a constitutive cleavage targeting the same site. Data from this work provide a first glimpse into a hitherto neglected molecular biology that ties PrP to its LZT cousins and suggest that manganese or zinc starvation may contribute to the etiology of prion disease in mice.
Keywords :
endoproteolysis , Evolution , prion proteins , Zinc , ZIP proteins
Journal title :
Journal of Molecular Biology
Serial Year :
2012
Journal title :
Journal of Molecular Biology
Record number :
1254783
Link To Document :
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