Structural domains in phospholemman - A possible role for the carboxyl terminus in channel inactivation

被引:39
作者
Chen, ZH
Jones, LR
O'Brian, JJ
Moorman, JR
Cala, SE
机构
[1] Indiana Univ, Sch Med, Krannert Inst Cardiol, Indianapolis, IN 46201 USA
[2] Indiana Univ, Sch Med, Dept Med, Indianapolis, IN 46201 USA
[3] Dupont Merck Pharmaceut Co Appl Biotechnol, Wilmington, DE 19880 USA
[4] Univ Virginia, Hlth Sci Ctr, Dept Med, Charlottesville, VA USA
[5] Univ Virginia, Hlth Sci Ctr, Dept Mol Physiol & Biol Phys, Charlottesville, VA USA
[6] Wayne State Univ, Sch Med, Dept Med, Program Mol & Cellular Cardiol, Detroit, MI 48201 USA
关键词
phospholemman; sarcolemma; ion channel; topology;
D O I
10.1161/01.RES.82.3.367
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Phospholemman (PLM) is a small (72-amino acid) transmembrane protein found in cardiac sarcolemma that is a major substrate for several protein kinases in vivo. Detailed structural data for PLM is lacking, but several studies have described an ion conductance that results from PLM expression in oocytes, Moreover, addition of purified PLM to lipid bilayers generates similar ion currents, suggesting that the PLM molecule itself might be sufficient for channel formation. To provide a framework for understanding the function of PLM, we investigated PLM topology and structure in sarcolemmal membrane vesicles and analyzed purified recombinant PLM, Immunoblot analyses with site-specific antibodies revealed that the extracellular segment (residues 1 to 17) exists in a protected configuration highly resistant to proteases, even in detergent solutions. The intracellular portion of the molecule (residues 38 to 72), in contrast, was highly susceptible to proteases, Trypsin treatment produced a limit peptide (residues 1 to 43), which showed little change in electrophoretic mobility in SDS gels and retained the ion-channel activity in lipid bilayers that is characteristic of the full-length protein. In addition, we found that conductance through PLM channels exhibited rapid inactivation during depolarizing ramps at voltages greater than +/-50 mV, Channels formed by trypsinized PLM or recombinant PLM 1-43 exhibited dramatic reductions in voltage-dependent inactivations. Our data point to distinct domains within the PLM molecule that may correlate with functional properties of channel activity observed in oocytes and lipid bilayers.
引用
收藏
页码:367 / 374
页数:8
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