TY - JOUR
T1 - Identification and radiation hybrid mapping of members of the porcine proteasome/ubiquitin system
AU - Rink, A.
AU - Santschi, E. M.
AU - Mendoza, K. M.
AU - Alexander, L. J.
AU - Beattie, C. W.
PY - 1999
Y1 - 1999
N2 - We report the identification and radiation hybrid mapping of members of the proteasome/ubiquitin system in pigs that, so far, have only been identified in humans and cattle, Expressed sequence tags (ESTs) were constructed from ten oligo(dT)-primed individually tagged, directionaliy cloned and normalized cDNA libraries from peripheral blood cells (PBC), spleen (Sp), thymus (Th), lymph node (LN) and bone marrow (BM) from immunologically naive and challenged pigs as part of an implant-associated orthopedic infection model. The ESTs mapped using the 7000 rad IMpRH panel (Hawken et al., 1999) were ubiquitin fusion-degradation 1 like protein (UFD1L), ubiquitin activating enzyme E1 and ubiquitin-S27a fusion protein which mapped to porcine chromosomes 14, 7 and X, respectively.
AB - We report the identification and radiation hybrid mapping of members of the proteasome/ubiquitin system in pigs that, so far, have only been identified in humans and cattle, Expressed sequence tags (ESTs) were constructed from ten oligo(dT)-primed individually tagged, directionaliy cloned and normalized cDNA libraries from peripheral blood cells (PBC), spleen (Sp), thymus (Th), lymph node (LN) and bone marrow (BM) from immunologically naive and challenged pigs as part of an implant-associated orthopedic infection model. The ESTs mapped using the 7000 rad IMpRH panel (Hawken et al., 1999) were ubiquitin fusion-degradation 1 like protein (UFD1L), ubiquitin activating enzyme E1 and ubiquitin-S27a fusion protein which mapped to porcine chromosomes 14, 7 and X, respectively.
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U2 - 10.1080/10495399909525936
DO - 10.1080/10495399909525936
M3 - Article
C2 - 10721427
AN - SCOPUS:0033252395
SN - 1049-5398
VL - 10
SP - 133
EP - 135
JO - Animal Biotechnology
JF - Animal Biotechnology
IS - 3
ER -