High frequency of polymorphism but no mutations found in the GLUT1 glucose transporter gene in NIDDM and familial obesity by SSCP analysis

被引:6
作者
Baroni, MG [1 ]
D'Andrea, MP [1 ]
Capici, F [1 ]
Buzzetti, R [1 ]
Cavallo, MG [1 ]
Fallucca, F [1 ]
Giovannini, C [1 ]
Pozzilli, P [1 ]
机构
[1] Univ Rome La Sapienza, Policlin Umberto I, Ist Clin Med 2, I-00161 Rome, Italy
关键词
D O I
10.1007/s004390050725
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
To evaluate whether a structural defect in the human glucose transporter gene GLUT1 could be involved in the aetiology of insulin resistance, a key factor of noninsulin-dependent diabetes mellitus (NIDDM) and obesity, we performed single-strand conformation polymorphism (SSCP) analysis in 40 subjects (20 NIDDM patients and 20 subjects with familial obesity). The GLUT1 gene, which is involved in basal glucose transport in most tissues, consists of ten exons and encodes a 492 amino acid protein. Population studies have shown a strong association between the X1 allele of an XbaI restriction fragment length polymorphism of the GLUT1 gene and NIDDM. We therefore performed SSCP analysis in NIDDM subjects known to carry at least one X1 allele. Variant SSCP patterns were detected in exons 2, 4, 5 and 9. Sequence analysis of the SSCP variants revealed the presence, in all exons examined, of silent mutations consisting of single-nucleotide substitutions with no amino acid changes. Both NIDDM and obese patients showed a high frequency of polymorphism in the sequence (50% and 35%, respectively). We conclude that the GLUT1 gene is unlikely to play a role in the aetiology of NIDDM and obesity. However, the strong association between the GLUT1 gene and NIDDM, together with the recent family studies showing linkage between chromosome Ip and NIDDM warrant further studies on this chromosomal region.
引用
收藏
页码:479 / 482
页数:4
相关论文
共 31 条
[1]   SEQUENCE REQUIREMENTS FOR SPLICING OF HIGHER EUKARYOTIC NUCLEAR PRE-MESSENGER-RNA [J].
AEBI, M ;
HORNIG, H ;
PADGETT, RA ;
REISER, J ;
WEISSMANN, C .
CELL, 1986, 47 (04) :555-565
[2]   MOLECULAR MAPPING OF THE MOUSE DB MUTATION [J].
BAHARY, N ;
LEIBEL, RL ;
JOSEPH, L ;
FRIEDMAN, JM .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (21) :8642-8646
[3]   DIABETES IN IDENTICAL-TWINS - A STUDY OF 200 PAIRS [J].
BARNETT, AH ;
EFF, C ;
LESLIE, RDG ;
PYKE, DA .
DIABETOLOGIA, 1981, 20 (02) :87-93
[4]   POLYMORPHISMS AT THE GLUT1 (HEPG2) AND GLUT4 (MUSCLE ADIPOCYTE) GLUCOSE TRANSPORTER GENES AND NON-INSULIN-DEPENDENT DIABETES-MELLITUS (NIDDM) [J].
BARONI, MG ;
OELBAUM, RS ;
POZZILLI, P ;
STOCKS, J ;
LI, SR ;
FIORE, V ;
GALTON, DJ .
HUMAN GENETICS, 1992, 88 (05) :557-561
[5]  
BARONI MG, 1994, HUM GENET, V93, P675
[6]   GENETIC-VARIANTS IN PROMOTERS AND CODING REGIONS OF THE MUSCLE GLYCOGEN-SYNTHASE AND THE INSULIN-RESPONSIVE GLUT4 GENES IN NIDDM [J].
BJORBAEK, C ;
ECHWALD, SM ;
HUBRICHT, P ;
VESTERGAARD, H ;
HANSEN, T ;
ZIERATH, J ;
PEDERSEN, O .
DIABETES, 1994, 43 (08) :976-983
[7]   SEGREGATION ANALYSIS OF NIDDM IN CAUCASIAN FAMILIES [J].
COOK, JTE ;
SHIELDS, DC ;
PAGE, RCL ;
LEVY, JC ;
HATTERSLEY, AT ;
SHAW, JAG ;
NEIL, HAW ;
WAINSCOAT, JS ;
TURNER, RC .
DIABETOLOGIA, 1994, 37 (12) :1231-1240
[8]  
COX NJ, 1988, LANCET, V2, P793
[9]   PATHOGENESIS OF NIDDM - A BALANCED OVERVIEW [J].
DEFRONZO, RA ;
BONADONNA, RC ;
FERRANNINI, E .
DIABETES CARE, 1992, 15 (03) :318-368
[10]  
DEVASKAR SU, 1992, PEDIATR RES, V31, P1, DOI 10.1203/00006450-199201000-00001