Organization and sequence of human cardiac myosin binding protein C gene (MYBPC3) and identification of mutations predicted to produce truncated proteins in familial hypertrophic cardiomyopathy

被引:231
作者
Carrier, L
Bonne, G
Bahrend, E
Yu, B
Richard, P
Niel, F
Hainque, B
Cruaud, C
Gary, F
Labeit, S
Bouhour, JB
Dubourg, O
Desnos, M
Hagege, AA
Trent, RJ
Komajda, M
Fiszman, M
Schwartz, K
机构
[1] HOP LA PITIE SALPETRIERE,SERV BIOCHIM,F-75651 PARIS 13,FRANCE
[2] HOP LA PITIE SALPETRIERE,SERV CARDIOL,F-75651 PARIS 13,FRANCE
[3] HOP LA PITIE SALPETRIERE,IFR PHYSIOPATHOL & GENET CARDIOVASC,F-75651 PARIS 13,FRANCE
[4] HOP NANTES,SERV CARDIOL,NANTES,FRANCE
[5] HOP AMBROISE PARE,SERV CARDIOL,BOULOGNE,FRANCE
[6] HOP BOUCICAULT,SERV CARDIOL,PARIS,FRANCE
[7] GENETHON,EVRY,FRANCE
[8] EMBL,HEIDELBERG,GERMANY
[9] ROYAL PRINCE ALFRED HOSP,DEPT MOL & CLIN GENET,SYDNEY,NSW,AUSTRALIA
关键词
cardiomyopathy; contractile protein; myosin binding protein; genetics; hypertrophy;
D O I
10.1161/01.res.0000435859.24609.b3
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Cardiac myosin binding protein C (MyBP-C) is a sarcomeric protein belonging to the intracellular immunoglobulin superfamily. Its function is uncertain, but for a decade evidence has existed for both structural and regulatory roles. The gene encoding cardiac MyBP-C (MYBPC3) in humans is located on chromosome 11p11.2, and mutations have been identified in this gene in unrelated families with familial hypertrophic cardiomyopathy (FHC). Detailed characterization of the MYBPC3 gene is essential for studies on gene regulation, analysis of the role of MyBP-C in cardiac contraction through the use of recombinant DNA technology, and mutational analyses of FHC. The organization of human MYBPC3 and screening for mutations in a panel of French families with FHC were established using polymerase chain reaction, single-strand conformation polymorphism, and sequencing. The MYBPC3 gene comprises >21000 base pairs and contains 35 exons. Two exons are unusually small in size, 3 bp each. We found six new mutations associated with FHC in seven unrelated French families. Four of these mutations are predicted to produce truncated cardiac MyBP-C polypeptides. The two others should each produce two aberrant proteins, one truncated and one mutated. The present study provides the first organization and sequence for an MyBP-C gene. The mutations reported here and previously in MYBPC3 result in aberrant transcripts that are predicted to encode significantly truncated cardiac MyBP-C polypeptides. This spectrum of mutations differs from the ones previously observed in other disease genes causing FHC. Our data strengthen the functional importance of MyBP-C in the regulation of cardiac work and provide the basis for further studies.
引用
收藏
页码:427 / 434
页数:8
相关论文
共 41 条
[1]   SEQUENCE OF AN UNUSUALLY LARGE PROTEIN IMPLICATED IN REGULATION OF MYOSIN ACTIVITY IN C-ELEGANS [J].
BENIAN, GM ;
KIFF, JE ;
NECKELMANN, N ;
MOERMAN, DG ;
WATERSTON, RH .
NATURE, 1989, 342 (6245) :45-50
[2]   THE ULTRASTRUCTURAL LOCATION OF C-PROTEIN, X-PROTEIN AND H-PROTEIN IN RABBIT MUSCLE [J].
BENNETT, P ;
CRAIG, R ;
STARR, R ;
OFFER, G .
JOURNAL OF MUSCLE RESEARCH AND CELL MOTILITY, 1986, 7 (06) :550-567
[3]   CARDIAC MYOSIN BINDING PROTEIN-C GENE SPLICE ACCEPTOR SITE MUTATION IS ASSOCIATED WITH FAMILIAL HYPERTROPHIC CARDIOMYOPATHY [J].
BONNE, G ;
CARRIER, L ;
BERCOVICI, J ;
CRUAUD, C ;
RICHARD, P ;
HAINQUE, B ;
GAUTEL, M ;
LABEIT, S ;
JAMES, M ;
BECKMANN, J ;
WEISSENBACH, J ;
VOSBERG, HP ;
FISZMAN, M ;
KOMAJDA, M ;
SCHWARTZ, K .
NATURE GENETICS, 1995, 11 (04) :438-440
[4]   MAPPING OF A NOVEL GENE FOR FAMILIAL HYPERTROPHIC CARDIOMYOPATHY TO CHROMOSOME-11 [J].
CARRIER, L ;
HENGSTENBERG, C ;
BECKMANN, JS ;
GUICHENEY, P ;
DUFOUR, C ;
BERCOVICI, J ;
DAUSSE, E ;
BEREBBIBERTRAND, I ;
WISNEWSKY, C ;
PULVENIS, D ;
FETLER, L ;
VIGNAL, A ;
WEISSENBACH, J ;
HILLAIRE, D ;
FEINGOLD, J ;
BOUHOUR, JB ;
HAGEGE, A ;
DESNOS, M ;
ISNARD, R ;
DUBOURG, O ;
KOMAJDA, M ;
SCHWARTZ, K .
NATURE GENETICS, 1993, 4 (03) :311-313
[5]   LOCATION OF C-PROTEIN IN RABBIT SKELETAL-MUSCLE [J].
CRAIG, R ;
OFFER, G .
PROCEEDINGS OF THE ROYAL SOCIETY SERIES B-BIOLOGICAL SCIENCES, 1976, 192 (1109) :451-461
[6]   SKELETAL-MUSCLE EXPRESSION AND ABNORMAL FUNCTION OF BETA-MYOSIN IN HYPERTROPHIC CARDIOMYOPATHY [J].
CUDA, G ;
FANANAPAZIR, L ;
ZHU, WS ;
SELLERS, JR ;
EPSTEIN, ND .
JOURNAL OF CLINICAL INVESTIGATION, 1993, 91 (06) :2861-2865
[7]   LOCALIZATION OF C-PROTEIN ISOFORMS IN CHICKEN SKELETAL-MUSCLE - ULTRASTRUCTURAL DETECTION USING MONOCLONAL-ANTIBODIES [J].
DENNIS, JE ;
SHIMIZU, T ;
REINACH, FC ;
FISCHMAN, DA .
JOURNAL OF CELL BIOLOGY, 1984, 98 (04) :1514-1522
[8]   CFTR ILLEGITIMATE TRANSCRIPTION IN LYMPHOID-CELLS - QUANTIFICATION AND APPLICATIONS TO THE INVESTIGATION OF PATHOLOGICAL TRANSCRIPTS [J].
FONKNECHTEN, N ;
CHELLY, J ;
LEPERCQ, J ;
KAHN, A ;
KAPLAN, JC ;
KITZIS, A ;
CHOMEL, JC .
HUMAN GENETICS, 1992, 88 (05) :508-512
[9]   Codon 102 of the cardiac troponin T gene is a putative hot spot for mutations in familial hypertrophic cardiomyopathy [J].
Forissier, JF ;
Carrier, L ;
Farza, H ;
Bonne, G ;
Bercovici, J ;
Richard, P ;
Hainque, B ;
Townsend, PJ ;
Yacoub, MH ;
Faure, S ;
Dubourg, O ;
Millaire, A ;
Hagege, AA ;
Desnos, M ;
Komajda, M ;
Schwartz, K .
CIRCULATION, 1996, 94 (12) :3069-3073
[10]   A molecular map of the interactions between titin and myosin-binding protein C - Implications for sarcomeric assembly in familial hypertrophic cardiomyopathy [J].
Freiburg, A ;
Gautel, M .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1996, 235 (1-2) :317-323