Conformationally specific misfolding of an integral membrane protein

被引:22
作者
Oxenoid, K [1 ]
Sönnichsen, FD [1 ]
Sanders, CR [1 ]
机构
[1] Case Western Reserve Univ, Dept Physiol & Biophys, Cleveland, OH 44106 USA
关键词
D O I
10.1021/bi0029090
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Membrane protein misfolding is related to the etiology of many diseases, but is poorly understood, particularly from a structural standpoint. This study focuses upon misfolding of a mutant form of diacylglycerol kinase (s-DAGK), a 40 kDa homotrimeric protein having nine transmembrane segments. Preparations of s-DAGK( sometimes contain a kinetically trapped misfolded population, as evidenced by lower-than-expected enzyme activity (with no accompanying change in substrate K,) and by the appearance of a second band in electrophoresis gels. Misfolding of s-DAGK may take place during cellular overexpression, but can also be reproduced using the purified enzyme. TROSY NMR spectra of s-DAGK as a 100 kDa complex with detergent micelles exhibit a single additional set of resonances from the misfolded form, indicating a single misfolded conformational state. The relative intensities of these extra resonances correlate with the percent reduction in enzyme activity below the maximum observed for fully folded s-DAGK. Misfolded s-DAGK exhibits a modest difference in its far-UV CD spectrum compared to the folded enzyme, consistent with a small degree of variance in secondary structural content between the two forms. However, differences in NMR chemical shift dispersion and temperature-dependent line widths exhibited by folded and misfolded s-DAGK support the notion that they represent very different structural states. Cross-linking experiments indicate that both the correctly folded enzyme and the kinetically trapped misfolded form are homotrimers. This work appears to represent the first documentation of conformationally specific misfolding of an integral membrane protein.
引用
收藏
页码:5111 / 5118
页数:8
相关论文
共 54 条
[21]   Outer membrane protein A of Escherichia coli inserts and folds into lipid bilayers by a concerted mechanism [J].
Kleinschmidt, JH ;
den Blaauwen, T ;
Driessen, AJM ;
Tamm, LK .
BIOCHEMISTRY, 1999, 38 (16) :5006-5016
[22]   A method for assessing the stability of a membrane protein [J].
Lau, FW ;
Bowie, JU .
BIOCHEMISTRY, 1997, 36 (19) :5884-5892
[23]   A domain-swapped RNase A dimer with implications for amyloid formation [J].
Liu, YS ;
Gotte, G ;
Libonati, M ;
Eisenberg, D .
NATURE STRUCTURAL BIOLOGY, 2001, 8 (03) :211-214
[24]  
MARKLEY JL, 1993, NMR MACROMOLECULES, P101
[25]   Properties of connexin26 gap junctional proteins derived from mutations associated with non-syndromal heriditary deafness [J].
Martin, PEM ;
Coleman, SL ;
Casalotti, SO ;
Forge, A ;
Evans, WH .
HUMAN MOLECULAR GENETICS, 1999, 8 (13) :2369-2376
[26]   EFFECT OF DETERGENT CONCENTRATION ON MULTIDIMENSIONAL SOLUTION NMR-SPECTRA OF MEMBRANE-PROTEINS IN MICELLES [J].
MCDONNELL, PA ;
OPELLA, SJ .
JOURNAL OF MAGNETIC RESONANCE SERIES B, 1993, 102 (01) :120-125
[27]   Tripartite management of unfolded proteins in the endoplasmic reticulum [J].
Mori, K .
CELL, 2000, 101 (05) :451-454
[28]   Assignment of 1HN, 15N, 13Cα, 13CO and 13Cβ resonances in a 67 kDa p53 dimer using 4D-TROSY NMR spectroscopy [J].
Mulder, FAA ;
Ayed, A ;
Yang, DW ;
Arrowsmith, CH ;
Kay, LE .
JOURNAL OF BIOMOLECULAR NMR, 2000, 18 (02) :173-176
[29]  
Naef R, 1998, MICROSC RES TECHNIQ, V41, P359, DOI 10.1002/(SICI)1097-0029(19980601)41:5<359::AID-JEMT3>3.0.CO
[30]  
2-L