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Updated: Aug 4, 2026

Mutagenesis and Analysis of Genetic Mutations in the GC-rich KISS1 Receptor Sequence Identified in Humans with Reproductive Disorders
Published on: September 4, 2011
Functional characterization of naturally occurring mutant androgen receptors from subjects with complete androgen
T R Brown1, D B Lubahn, E M Wilson
1Department of Pediatrics, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.
Abstract:
Mutations in the androgen receptor (AR) are thought to cause complete androgen insensitivity (CAIS) in 46,XY human subjects who have a female phenotype despite normal adult male concentrations of plasma testosterone. Assays of AR binding in cultured skin fibroblasts from subjects with CAIS show either an apparent absence of AR (AR-) or normal levels of AR (AR+) binding. In several subjects with CAIS, AR-, no gross AR mutation was detected by Southern blot analyses of genomic DNA and normal sized 10 kilobase mRNA was present on Northern blots of poly(A+) RNA from cultured genital skin fibroblasts. We have used the polymerase chain reaction to amplify individual exons within the human AR gene of subjects with CAIS and have identified point mutations in three subjects. In one AR- subject (R774C), amino acid 774 was changed from arginine (CGC) to cysteine (TGC), in another AR- subject (R831Q), arginine (CGA) was changed to glutamine (CAA) at position 831, and in an AR+ subject (V866M) a methionine (ATG) was substituted for valine (GTG) at position 866. Transfection of wild type and mutant AR cDNA clones into COS cells results in detection of AR protein by immunoblotting. AR ligand binding activity is absent in cells transfected with AR mutants R774C and R831Q, but present with AR mutant V866M. Androgen binding in cells transfected with AR mutant V866M has a 6-fold lower apparent binding affinity than that of wild-type AR. Transcriptional activation of the MMTV-CAT reporter gene was androgen dependent and specific and nearly maximal at physiological concentrations (10(-10) M) of androgen when wild-type AR was transfected into cells, whereas neither AR mutants R774C nor R831Q were able to stimulate CAT activity even at 10(-8) M androgen. AR mutant V866M was able to stimulate CAT activity but the androgen dose dependency was shifted toward pharmacological concentrations of steroid that exceed in vivo levels. The molecular basis of CAIS in humans exhibits genetic heterogeneity. Our study shows that some cases of CAIS are explained by an inability to form a functional AR-steroid complex and hence, the AR is unable to activate transcription of genes essential for male sex differentiation during fetal development.
Insights
Mutations in the androgen receptor (AR) cause complete androgen insensitivity (CAIS) in 46,XY individuals. Genetic analysis identified specific AR point mutations, leading to non-functional AR-steroid complexes and impaired male sex differentiation.
Area of Science:
- Genetics
- Endocrinology
- Molecular Biology
Background:
- Complete androgen insensitivity (CAIS) in 46,XY individuals results in a female phenotype despite normal male testosterone levels.
- Previous studies indicated CAIS can arise from absent or non-binding androgen receptors (AR).
- Gross AR gene mutations were not detected in some CAIS subjects, suggesting point mutations or other alterations.
Purpose of the Study:
- To investigate the molecular basis of CAIS by identifying specific mutations in the androgen receptor (AR) gene.
- To characterize the functional consequences of identified AR mutations on AR-steroid binding and transcriptional activity.
Main Methods:
- Polymerase chain reaction (PCR) was used to amplify and sequence individual exons of the human AR gene in CAIS subjects.
- Wild-type and mutant AR complementary DNA (cDNA) clones were transfected into COS cells for functional analysis.
- AR ligand binding assays, immunoblotting, and transcriptional activation assays (MMTV-CAT reporter gene) were performed.
Main Results:
- Point mutations were identified in three CAIS subjects: R774C and R831Q (AR- subjects) and V866M (AR+ subject).
- AR mutants R774C and R831Q showed absent ligand binding activity, while V866M exhibited reduced binding affinity.
- Mutants R774C and R831Q failed to stimulate transcriptional activity, whereas V866M showed impaired activation at physiological androgen concentrations.
Conclusions:
- The study demonstrates genetic heterogeneity in the molecular basis of CAIS.
- Specific AR point mutations can lead to a non-functional AR-steroid complex, preventing activation of genes crucial for male development.
- These findings highlight the importance of functional AR in male sex differentiation.
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