TY - JOUR
T1 - Expanding the Phenotypic Spectrum of Kenny–Caffey Syndrome
AU - Schigt, Heidi
AU - Bald, Martin
AU - van der Eerden, Bram C.J.
AU - Gal, Lars
AU - Ilenwabor, Barnabas P.
AU - Konrad, Martin
AU - Levine, Michael A.
AU - Li, Dong
AU - Mache, Christoph J.
AU - Mackin, Sharon
AU - Perry, Colin
AU - Rios, Francisco J.
AU - Schlingmann, Karl Peter
AU - Storey, Ben
AU - Trapp, Christine M.
AU - Verkerk, Annemieke J.M.H.
AU - Zillikens, M. C.
AU - Touyz, Rhian M.
AU - Hoorn, Ewout J.
AU - Hoenderop, Joost G. J.
AU - de Baaij, Jeroen H. F.
N1 - Publisher Copyright:
© The Author(s) 2023. Published by Oxford University Press on behalf of the Endocrine Society.
PY - 2023/9/1
Y1 - 2023/9/1
N2 - Context: Kenny–Caffey syndrome (KCS) is a rare hereditary disorder characterized by short stature, hypoparathyroidism, and electrolyte disturbances. KCS1 and KCS2 are caused by pathogenic variants in TBCE and FAM111A, respectively. Clinically the phenotypes are difficult to distinguish. Objective: The objective was to determine and expand the phenotypic spectrum of KCS1 and KCS2 in order to anticipate complications that may arise in these disorders. Methods: We clinically and genetically analyzed 10 KCS2 patients from 7 families. Because we found unusual phenotypes in our cohort, we performed a systematic review of genetically confirmed KCS cases using PubMed and Scopus. Evaluation by 3 researchers led to the inclusion of 26 papers for KCS1 and 16 for KCS2, totaling 205 patients. Data were extracted following the Cochrane guidelines and assessed by 2 independent researchers. Results: Several patients in our KCS2 cohort presented with intellectual disability (3/10) and chronic kidney disease (6/10), which are not considered common findings in KCS2. Systematic review of all reported KCS cases showed that the phenotypes of KCS1 and KCS2 overlap for postnatal growth retardation (KCS1: 52/52, KCS2: 23/23), low parathyroid hormone levels (121/121, 16/20), electrolyte disturbances (139/139, 24/27), dental abnormalities (47/50, 15/16), ocular abnormalities (57/60, 22/23), and seizures/spasms (103/115, 13/16). Symptoms more prevalent in KCS1 included intellectual disability (74/80, 5/24), whereas in KCS2 bone cortical thickening (1/18, 16/20) and medullary stenosis (7/46, 27/28) were more common. Conclusion: Our case series established chronic kidney disease as a new feature of KCS2. In the literature, we found substantial overlap in the phenotypic spectra of KCS1 and KCS2, but identified intellectual disability and the abnormal bone phenotype as the most distinguishing features.
AB - Context: Kenny–Caffey syndrome (KCS) is a rare hereditary disorder characterized by short stature, hypoparathyroidism, and electrolyte disturbances. KCS1 and KCS2 are caused by pathogenic variants in TBCE and FAM111A, respectively. Clinically the phenotypes are difficult to distinguish. Objective: The objective was to determine and expand the phenotypic spectrum of KCS1 and KCS2 in order to anticipate complications that may arise in these disorders. Methods: We clinically and genetically analyzed 10 KCS2 patients from 7 families. Because we found unusual phenotypes in our cohort, we performed a systematic review of genetically confirmed KCS cases using PubMed and Scopus. Evaluation by 3 researchers led to the inclusion of 26 papers for KCS1 and 16 for KCS2, totaling 205 patients. Data were extracted following the Cochrane guidelines and assessed by 2 independent researchers. Results: Several patients in our KCS2 cohort presented with intellectual disability (3/10) and chronic kidney disease (6/10), which are not considered common findings in KCS2. Systematic review of all reported KCS cases showed that the phenotypes of KCS1 and KCS2 overlap for postnatal growth retardation (KCS1: 52/52, KCS2: 23/23), low parathyroid hormone levels (121/121, 16/20), electrolyte disturbances (139/139, 24/27), dental abnormalities (47/50, 15/16), ocular abnormalities (57/60, 22/23), and seizures/spasms (103/115, 13/16). Symptoms more prevalent in KCS1 included intellectual disability (74/80, 5/24), whereas in KCS2 bone cortical thickening (1/18, 16/20) and medullary stenosis (7/46, 27/28) were more common. Conclusion: Our case series established chronic kidney disease as a new feature of KCS2. In the literature, we found substantial overlap in the phenotypic spectra of KCS1 and KCS2, but identified intellectual disability and the abnormal bone phenotype as the most distinguishing features.
KW - chronic kidney disease
KW - gracile bone dysplasia
KW - hypoparathyroidism retardation dysmorphism
KW - osteocraniostenosis
KW - Sanjad–Sakati syndrome
UR - https://www.scopus.com/pages/publications/85168315808
U2 - 10.1210/clinem/dgad147
DO - 10.1210/clinem/dgad147
M3 - Article
C2 - 36916904
AN - SCOPUS:85168315808
SN - 0021-972X
VL - 108
SP - E754-E768
JO - Journal of Clinical Endocrinology and Metabolism
JF - Journal of Clinical Endocrinology and Metabolism
IS - 9
ER -