Literature DB >> 15782410

Renpenning syndrome comes into focus.

Roger E Stevenson1, C W Bennett, F Abidi, T Kleefstra, M Porteous, R J Simensen, H A Lubs, B C J Hamel, C E Schwartz.   

Abstract

Renpenning syndrome represents a prototypic X-linked mental retardation condition with full expression of the phenotype in males and little or no expression in females. The predominant clinical findings are microcephaly, long narrow face, short stature with lean body build, and small testes. Mental retardation, usually of severe degree, occurs in 95% of cases. Less than 20% of cases have major malformations, the most common being cardiac defects and cleft palate. Subsequent to the description of mutations in the polyglutamine tract binding protein 1 (PQBP1) in Sutherland-Haan syndrome, Hamel cerebropalatocardiac syndrome, MRX55, and two small XLMR families, a single nucleotide insertion has been found in the original family with Renpenning syndrome and an AGAG deletion in a second family with the Renpenning syndrome. Mutations have also been found in Golabi-Ito-Hall syndrome, Porteous syndrome, and an additional small family. It is now demonstrated that five named XLMR syndromes (Sutherland-Haan, Hamel cerebropalatocardiac, Golabi-Ito-Hall, Porteous, and Renpenning), one nonsyndromic family (MRX55), and three small XLMR families have PQBP1 mutations and are thus allelic XLMR entities. In acknowledgement of the historical importance of the original report of Renpenning syndrome [1962], we propose that the entities with PQBP1 mutations be combined under the name of Renpenning syndrome. 2005 Wiley-Liss, Inc.

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Year:  2005        PMID: 15782410     DOI: 10.1002/ajmg.a.30664

Source DB:  PubMed          Journal:  Am J Med Genet A        ISSN: 1552-4825            Impact factor:   2.802


  23 in total

1.  The XLID protein PQBP1 and the GTPase Dynamin 2 define a signaling link that orchestrates ciliary morphogenesis in postmitotic neurons.

Authors:  Yoshiho Ikeuchi; Luis de la Torre-Ubieta; Takahiko Matsuda; Hanno Steen; Hitoshi Okazawa; Azad Bonni
Journal:  Cell Rep       Date:  2013-08-29       Impact factor: 9.423

Review 2.  Genetics and signaling mechanisms of orofacial clefts.

Authors:  Kurt Reynolds; Shuwen Zhang; Bo Sun; Michael A Garland; Yu Ji; Chengji J Zhou
Journal:  Birth Defects Res       Date:  2020-07-15       Impact factor: 2.344

Review 3.  Genetic basis of congenital cardiovascular malformations.

Authors:  Seema R Lalani; John W Belmont
Journal:  Eur J Med Genet       Date:  2014-04-30       Impact factor: 2.708

4.  Renpenning Syndrome in a Turkish Patient: de novo Variant c.607C>T in PACS1 and Hypogammaglobulinemia Phenotype.

Authors:  Fatma Kurt Colak; Nilnur Eyerci; Caner Aytekin; Ayse S Eksioglu
Journal:  Mol Syndromol       Date:  2020-04-17

5.  Solution model of the intrinsically disordered polyglutamine tract-binding protein-1.

Authors:  Martin Rees; Christian Gorba; Cesira de Chiara; Tam T T Bui; Mitla Garcia-Maya; Alex F Drake; Hitoshi Okazawa; Annalisa Pastore; Dmitri Svergun; Yu Wai Chen
Journal:  Biophys J       Date:  2012-04-03       Impact factor: 4.033

6.  Mutation in PQBP1 is associated with periventricular heterotopia.

Authors:  Volney L Sheen; Alcy R Torres; Xiang Du; Brenda Barry; Christopher A Walsh; Virginia E Kimonis
Journal:  Am J Med Genet A       Date:  2010-11       Impact factor: 2.802

7.  Drosophila PQBP1 regulates learning acquisition at projection neurons in aversive olfactory conditioning.

Authors:  Takuya Tamura; Daisuke Horiuchi; Yi-Chung Chen; Masaki Sone; Tomoyuki Miyashita; Minoru Saitoe; Natsue Yoshimura; Ann-Shyn Chiang; Hitoshi Okazawa
Journal:  J Neurosci       Date:  2010-10-20       Impact factor: 6.167

8.  The original Lujan syndrome family has a novel missense mutation (p.N1007S) in the MED12 gene.

Authors:  Charles E Schwartz; Patrick S Tarpey; Herbert A Lubs; Alain Verloes; Melanie M May; Hiba Risheg; Michael J Friez; P Andrew Futreal; Sarah Edkins; Jon Teague; Sylvain Briault; Cindy Skinner; Astrid Bauer-Carlin; Richard J Simensen; Sumy M Joseph; Julie R Jones; Josef Gecz; Michael R Stratton; F Lucy Raymond; Roger E Stevenson
Journal:  J Med Genet       Date:  2007-03-16       Impact factor: 6.318

9.  The splicing factor PQBP1 regulates mesodermal and neural development through FGF signaling.

Authors:  Yasuno Iwasaki; Gerald H Thomsen
Journal:  Development       Date:  2014-09-10       Impact factor: 6.868

10.  The Renpenning syndrome-associated protein PQBP1 facilitates the nuclear import of splicing factor TXNL4A through the karyopherin β2 receptor.

Authors:  Xian Liu; Lin-Xia Dou; Junhai Han; Zi Chao Zhang
Journal:  J Biol Chem       Date:  2020-02-10       Impact factor: 5.157

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