Severity: Warning
Message: file_get_contents(https://...@pubfacts.com&api_key=b8daa3ad693db53b1410957c26c9a51b4908&a=1): Failed to open stream: HTTP request failed! HTTP/1.1 429 Too Many Requests
Filename: helpers/my_audit_helper.php
Line Number: 176
Backtrace:
File: /var/www/html/application/helpers/my_audit_helper.php
Line: 176
Function: file_get_contents
File: /var/www/html/application/helpers/my_audit_helper.php
Line: 250
Function: simplexml_load_file_from_url
File: /var/www/html/application/helpers/my_audit_helper.php
Line: 3122
Function: getPubMedXML
File: /var/www/html/application/controllers/Detail.php
Line: 575
Function: pubMedSearch_Global
File: /var/www/html/application/controllers/Detail.php
Line: 489
Function: pubMedGetRelatedKeyword
File: /var/www/html/index.php
Line: 316
Function: require_once
Introduction: Autosomal dominant hypophosphatemic rickets (ADHR) is caused by pathogenic variants in the fibroblast growth factor 23 (FGF23) gene, which plays a key role in the regulation of phosphorus metabolism. FGF23 has the RXXR motif recognized by furin, leading to cleavage between R179 and S180 and thereby inactivating the protein's function. Previously reported variants in FGF23 causing ADHR occurred only affecting residues R176 or R179, which are located in the RXXR motif, leading to impaired cleavage. Impairment of protein cleavage increases bioactive FGF23 levels, subsequently resulting in the development of ADHR.
Case Presentation: A 13-year-old boy with ADHR with the appearance of rickets on bone radiographs as well as documented hypophosphatemia was found to have a novel S180I variant in the FGF23 gene. Unlike previously reported pathogenic variants, this novel variant was located outside the RXXR motif. Subsequently, western blotting showed that the S180I mutant was resistant to proteolysis than the wild-type, similar to pathogenic variants model mutant (R176Q/R179Q).
Conclusion: The novel variant in FGF23 presented herein, found in a patient with ADHR, is the first pathogenic variant found outside the typical furin recognition sequence. It exhibits proteolysis resistance due to impaired cleavage.
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Source |
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http://dx.doi.org/10.1159/000538388 | DOI Listing |
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