tripeptidyl peptidase ii
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2018 ◽  
Vol 4 (6) ◽  
pp. e285 ◽  
Author(s):  
Eva M. Reinthaler ◽  
Elisabeth Graf ◽  
Tobias Zrzavy ◽  
Thomas Wieland ◽  
Christoph Hotzy ◽  
...  

ObjectiveTo ascertain the genetic cause of a consanguineous family from Syria suffering from a sterile brain inflammation mimicking a mild nonprogressive form of MS.MethodsWe used homozygosity mapping and next-generation sequencing to detect the disease-causing gene in the affected siblings. In addition, we performed RNA and protein expression studies, enzymatic activity assays, immunohistochemistry, and targeted sequencing of further MS cases from Austria, Germany, Canada and Jordan.ResultsIn this study, we describe the identification of a homozygous missense mutation (c.82T>G, p.Cys28Gly) in the tripeptidyl peptidase II (TPP2) gene in all 3 affected siblings of the family. Sequencing of all TPP2-coding exons in 826 MS cases identified one further homozygous missense variant (c.2027C>T, p.Thr676Ile) in a Jordanian MS patient. TPP2 protein expression in whole blood was reduced in the affected siblings. In contrast, TPP2 protein expression in postmortem brain tissue from MS patients without TPP2 mutations was highly upregulated.ConclusionsThe homozygous TPP2 mutation (p.Cys28Gly) is likely responsible for the inflammation phenotype in this family. TPP2 is an ubiquitously expressed serine peptidase that removes tripeptides from the N-terminal end of longer peptides. TPP2 is involved in various biological processes including the destruction of major histocompatibility complex Class I epitopes. Recessive loss-of-function mutations in TPP2 were described in patients with Evans syndrome, a rare autoimmune disease affecting the hematopoietic system. Based on the gene expression results in our MS autopsy brain samples, we further suggest that TPP2 may play a broader role in the inflammatory process in MS.


2017 ◽  
Vol 114 (17) ◽  
pp. 4412-4417 ◽  
Author(s):  
Yoshiyuki Fukuda ◽  
Florian Beck ◽  
Jürgen M. Plitzko ◽  
Wolfgang Baumeister

Tripeptidyl peptidase II (TPPII) is a eukaryotic protease acting downstream of the 26S proteasome; it removes tripeptides from the degradation products released by the proteasome. Structural studies in vitro have revealed the basic architecture of TPPII, a two-stranded linear polymer that assembles to form a spindle-shaped complex of ∼6 MDa. Dependent on protein concentration, TPPII has a distinct tendency for polymorphism. Therefore, its structure in vivo has remained unclear. To resolve this issue, we have scrutinized cryo-electron tomograms of rat hippocampal neurons for the occurrence and spatial distribution of TPPII by template matching. The quality of the tomograms recorded with the Volta phase plate enabled a detailed structural analysis of TPPII despite its low abundance. Two different assembly states (36-mers and 32-mers) coexist as well as occasional extended forms with longer strands. A distance analysis of the relative locations of TPPII and 26S proteasomes confirmed the visual impression that these two complexes spatially associate in agreement with TPPII’s role in postproteasomal degradation.


2015 ◽  
Vol 14 (8) ◽  
pp. 2177-2193 ◽  
Author(s):  
Anne Wiemhoefer ◽  
Anita Stargardt ◽  
Wouter A. van der Linden ◽  
Maria C. Renner ◽  
Ronald E. van Kesteren ◽  
...  

Blood ◽  
2015 ◽  
Vol 125 (5) ◽  
pp. 753-761 ◽  
Author(s):  
Polina Stepensky ◽  
Anne Rensing-Ehl ◽  
Ruth Gather ◽  
Shoshana Revel-Vilk ◽  
Ute Fischer ◽  
...  

Key Points Deficiency of TPP2 is associated with Evans syndrome and viral infection susceptibility. TPP2 deficiency links premature immunosenescence of T and B cells with severe autoimmunity.


2014 ◽  
Vol 60 (3) ◽  
pp. 27-31 ◽  
Author(s):  
DO Pashevin ◽  
◽  
SV Honcharov ◽  
LV Tumanovs'ka ◽  
VIe Dosenko ◽  
...  

2013 ◽  
Vol 19 (S2) ◽  
pp. 68-69
Author(s):  
A.-M. Schönegge ◽  
J. Peters ◽  
M. Wehmer ◽  
W. Baumeister ◽  
B. Rockel

Extended abstract of a paper presented at Microscopy and Microanalysis 2013 in Indianapolis, Indiana, USA, August 4 – August 8, 2013.


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