Molecular basis of glucocorticoid-resistant syndromes

被引:29
作者
Werner, S [1 ]
Bronnegard, M [1 ]
机构
[1] HUDDINGE UNIV HOSP, DEPT PEDIAT, STOCKHOLM, SWEDEN
关键词
hormone resistance; glucocorticoid receptor; mutation;
D O I
10.1016/0039-128X(96)00017-7
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
Generalized inherited glucocorticoid resistance (GIGR) is a rare syndrome characterized by elevated levels of plasma cortisol but lacking the symptoms of Cushing's syndrome. Biochemically, the condition is characterized by a relative resistance to glucocorticoids that can be compensated for by the elevated levels of cortisol. The inheritance pattern of GIGR is incompletely understood and one of the central questions is whether there is a correlation between genotype and phenotype. Analysis of mutations within the receptor resulting in relative glucocorticoid resistance has identified Two regions of clustered mutations in the proximity of previously identified affinity-labeled residues, the putative steroid-binding site. In the majority of cases, the mutation affects steroid binding and transactivation to the same degree, with the exceptions suggesting an explanation for the variability of the clinical manifestations. From a clinical point of view, in addition to preexisting genetic resistance to glucocorticoids, it is important to consider acquired changes in glucocorticoid receptor (GR) gene structure and organization including alterations of noncoding sequences, and the importance of the resultant mutations, deletions, and other changes affecting receptor function. Finally, studies of New World primates and cell lines derived from hematologic malignancies constitute animal and human models for the molecular basis of glucocorticoid resistance where a number of inherited and acquired mutations in the GR gene have been demonstrated.
引用
收藏
页码:216 / 221
页数:6
相关论文
共 50 条
[41]   An investigation of the molecular and biochemical basis underlying chlorantraniliprole-resistant Drosophila strains and their cross-resistance to other insecticides [J].
Kim, A-Young ;
Kwon, Deok Ho ;
Jeong, In Hong ;
Koh, Young Ho .
ARCHIVES OF INSECT BIOCHEMISTRY AND PHYSIOLOGY, 2018, 99 (04)
[42]   Molecular determinants of glucocorticoid actions in inflammatory joint diseases [J].
Baschant, Ulrike ;
Culemann, Stephan ;
Tuckermann, Jan .
MOLECULAR AND CELLULAR ENDOCRINOLOGY, 2013, 380 (1-2) :108-118
[43]   Molecular aspects of glucocorticoid hormone action in rheumatoid arthritis [J].
Neeck, G ;
Renkawitz, R ;
Eggert, M .
CYTOKINES CELLULAR & MOLECULAR THERAPY, 2002, 7 (02) :61-69
[44]   Molecular mechanisms contributing to glucocorticoid resistance in lymphoid malignancies [J].
Scheijen, Blanca .
CANCER DRUG RESISTANCE, 2019, 2 (03) :647-664
[45]   The genetic and molecular basis of congenital cataract [J].
Santana, Alessandro ;
Waiswol, Mauro .
ARQUIVOS BRASILEIROS DE OFTALMOLOGIA, 2011, 74 (02) :136-142
[46]   The molecular genetic basis for hypertrophic cardiomyopathy [J].
Marian, AJ ;
Roberts, R .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2001, 33 (04) :655-670
[47]   Molecular Basis of KELnull Phenotype in Brazilians [J].
Boturao-Neto, Edmir ;
Yamamoto, Mihoko ;
Chiba, Akemi Kuroda ;
Sugano Kimura, Elisa Yuriko ;
Valgueiro Costa de Oliveira, Maria do Carmo ;
do Monte Barretto, Claudia Lumack ;
Alves Nunes, Mercia Maria ;
Lopes Albuquerque, Sergio Roberto ;
de Deus Santos, Marcos Daniel ;
Bordin, Jose Orlando .
TRANSFUSION MEDICINE AND HEMOTHERAPY, 2015, 42 (01) :52-58
[48]   Molecular basis of weak D in Taiwanese [J].
I.-L. Lin ;
M.-C. Shih ;
M.-H. Hsieh ;
T.-C. Liu ;
S.-E. Chang ;
C.-L. Lin ;
J.-G. Chang .
Annals of Hematology, 2003, 82 :617-620
[49]   The molecular basis of nephrogenic diabetes insipidus [J].
A. Oksche ;
Walter Rosenthal .
Journal of Molecular Medicine, 1998, 76 :326-337
[50]   Molecular basis of androgen receptor diseases [J].
Yong, EL ;
Lim, J ;
Qi, W ;
Ong, V ;
Mifsud, A .
ANNALS OF MEDICINE, 2000, 32 (01) :15-22