The Role of Calnexin and Calreticulin in MHC Class I Assembly

Author(s):  
Raju Adhikari ◽  
Tim Elliott
Keyword(s):  
1994 ◽  
Vol 40 ◽  
pp. 60
Author(s):  
R. Rubocki ◽  
B. Berrigan ◽  
S. Shepherd ◽  
J. Wisecarver

2001 ◽  
Vol 33 (1-2) ◽  
pp. 319 ◽  
Author(s):  
H Sun ◽  
V Subbotin ◽  
J Woodward ◽  
L Valdivia ◽  
J.J Fung ◽  
...  

H-2 Antigens ◽  
1987 ◽  
pp. 415-428 ◽  
Author(s):  
Suzanne Ostrand-Rosenberg ◽  
Geoffrey A. Cole ◽  
Gerald A. Cole ◽  
Michael Nishimura ◽  
Virginia Clements ◽  
...  

2019 ◽  
Vol 2019 ◽  
pp. 1-9 ◽  
Author(s):  
Simo Xia ◽  
Yijie Tao ◽  
Likun Cui ◽  
Yizhi Yu ◽  
Sheng Xu

MHC class I molecules are key in the presentation of antigen and initiation of adaptive CD8+ T cell responses. In addition to its classical activity, MHC I may possess nonclassical functions. We have previously identified a regulatory role of MHC I in TLR signaling and antibacterial immunity. However, its role in innate antiviral immunity remains unknown. In this study, we found a reduced viral load in MHC I-deficient macrophages that was independent of type I IFN production. Mechanically, MHC I mediated viral suppression by inhibiting the type I IFN signaling pathway, which depends on SHP2. Cross-linking MHC I at the membrane increased SHP2 activation and further suppressed STAT1 phosphorylation. Therefore, our data revealed an inhibitory role of MHC I in type I IFN response to viral infection and expanded our understanding of MHC I and antigen presentation.


Author(s):  
Roman M. Kassa ◽  
Roberta Bonafede ◽  
Federico Boschi ◽  
Manuela Malatesta ◽  
Raffaella Mariotti

Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disease characterized by motoneuron death. Several cellular pathways have been described to be involved in ALS pathogenesis; however, the involvement of presynaptic stripping and the related MHC class I molecules in mutant SOD1 motoneurons remains to be clarified. To this purpose, we here investigated, for the first time, the motoneurons behavior, di per seand after facial axonal injury, in terms of synaptic stripping and MHC class I expression in wild-type (Wt) mice and in a murine model of ALS, the SOD1(G93A) mice, at the presymptomatic and symptomatic stage of the disease. Concerning Wt animals, we found a reduction in synaptophysin immunoreactivity and an increase of MHC class I molecules in facial motoneurons after axotomy. In uninjured motoneurons of SOD1(G93A) mice, an altered presynaptic framework was evident, and this phenomenon increased during the disease course. The alteration in the presynaptic input is related to excitatory fibers. Moreover, after injury, a further decrease of excitatory input was not associated to an upregulation of MHC class I molecules in motoneuron soma. This study demonstrates, for the first time, that the presence of mutated SOD1 protein affects the MHC class I molecules expression, altering the presynaptic input in motoneurons. Nevertheless, a positive MHC class I immunolabeling was evident in glial cells around facial injured motoneurons, underlying an involvement of these cells in synaptic stripping. This study contributes to better understand the involvement of the mutated SOD1 protein in the vulnerability of motoneurons after damage.


2011 ◽  
Vol 186 (4) ◽  
pp. 1904-1908 ◽  
Author(s):  
Lan Huang ◽  
Julie M. Marvin ◽  
Nia Tatsis ◽  
Laurence C. Eisenlohr

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