TY - JOUR
T1 - Differential processing of human and rat E1 α precursors of the branched-chain α-keto acid dehydrogenase complex caused by an N-terminal proline in the rat sequence
AU - Wynn, R. Max
AU - Kochi, Hideo
AU - Cox, Rody P.
AU - Chuang, David T.
N1 - Funding Information:
This work was supported by Grants DK-37373 and DK-26758 from The National Institutes of Health, and Grant 1-1149 from the March of Dimes Birth Defects Foundation.
PY - 1994/9/28
Y1 - 1994/9/28
N2 - The N-terminal sequences of the E1 α, E1β and E2 subunits of the human branched-chain α-keto acid dehydrogenase complex have been determined by microsequencing. The N-termini of human E1β and E2 subunits (Val and Gly, respectively) are indentical to those of the corresponding rat and bovine subunits. However, the N-terminus of the human E1 α subunit (Ser) is identical to bovine, but differs from the rat E1 α (Phe0 subunit. Comparison of the N-terminal sequences of human and rat E1 α subunits shows that the serine residue at the + 1 position in the human sequence is replaced by a proline residue in the rat sequence. The presence of the proline residue apparently causes a 5′-shift by one residue in the cleavage site by the mitochondrial processing peptidase in the rat sequence, when compared to the human sequence. The results provide evidence that the mitochondrial processing peptidase cannot cleave an X-pro bond, similar to trypsin, chymotrypsinand microsomal signal peptidases.
AB - The N-terminal sequences of the E1 α, E1β and E2 subunits of the human branched-chain α-keto acid dehydrogenase complex have been determined by microsequencing. The N-termini of human E1β and E2 subunits (Val and Gly, respectively) are indentical to those of the corresponding rat and bovine subunits. However, the N-terminus of the human E1 α subunit (Ser) is identical to bovine, but differs from the rat E1 α (Phe0 subunit. Comparison of the N-terminal sequences of human and rat E1 α subunits shows that the serine residue at the + 1 position in the human sequence is replaced by a proline residue in the rat sequence. The presence of the proline residue apparently causes a 5′-shift by one residue in the cleavage site by the mitochondrial processing peptidase in the rat sequence, when compared to the human sequence. The results provide evidence that the mitochondrial processing peptidase cannot cleave an X-pro bond, similar to trypsin, chymotrypsinand microsomal signal peptidases.
KW - (Human)
KW - Alternate cleavage site
KW - E1 β and E2 subunit
KW - Mitochondrial processing peptidase
KW - N-terminal sequencing
KW - X-Pro bond
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U2 - 10.1016/0304-4165(94)90161-9
DO - 10.1016/0304-4165(94)90161-9
M3 - Article
C2 - 7918575
AN - SCOPUS:0028001094
SN - 0304-4165
VL - 1201
SP - 125
EP - 128
JO - Biochimica et Biophysica Acta - General Subjects
JF - Biochimica et Biophysica Acta - General Subjects
IS - 1
ER -