FUNCTIONAL TOPOLOGY OF A SURFACE LOOP SHIELDING THE CATALYTIC CENTER IN LIPOPROTEIN-LIPASE

被引:33
作者
FAUSTINELLA, F
SMITH, LC
CHAN, L
机构
[1] BAYLOR COLL MED, DEPT CELL BIOL, 1 BAYLOR PLAZA, HOUSTON, TX 77030 USA
[2] BAYLOR COLL MED, DEPT MED, HOUSTON, TX 77030 USA
关键词
D O I
10.1021/bi00147a002
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
Lipoprotein lipase (LPL), hepatic lipase, and pancreatic lipase show high sequence homology to one another. The crystal structure of pancreatic lipase suggests that it contains a trypsin-like Asp-His-Ser catalytic triad at the active center, which is shielded by a disulfide bridge-bounded surface loop that must be repositioned before the substrate can gain access to the catalytic residues. By sequence alignment, the homologous catalytic triad in LPL corresponds to ASp156-His241-Ser132, absolutely conserved residues, and the homologous surface loop to residues 217-238, a poorly conserved region. To verify these assignments, we expressed in vitro wild-type LPL and mutant LPLs having single amino acid mutations involving residue Asp156 (to His, Ser, Asn, Ala, Glu, or Gly), His241 (to Asn, Ala, Arg, Gln, or Trp), or Ser132 (to Gly, Ala, Thu, or Asp) individually. All 15 mutant LPLs were totally devoid of enzyme activity, while wild-type LPL and other mutant LPLs containing substitutions in other positions were fully active. We further replaced the 22-residue LPL loop which shields the catalytic center either partially (replacing 6 of 22 residues) or completely with the corresponding hepatic lipase loop. The partial loop-replacement chimeric LPL was found to be fully active, and the complete loop-replacement mutant had approximately 60% activity, although the primary sequence of the hepatic lipase loop is quite different. In contrast, replacement with the pancreatic lipase loop completely inactivated the enzyme. Our results are consistent with Asp156-His241-Ser132 being the catalytic triad in lipoprotein lipase. Furthermore, they indicate that the surface loop that shields the active center in the absence of substrate does not have an absolute sequence requirement; replacement of the loop with a different sequence (such as hepatic lipase) having similar predicted secondary structures appears capable of appropriate movement to allow water-insoluble substrates to reach the catalytic center of LPL for hydrolysis.
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页码:7219 / 7223
页数:5
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