Literature DB >> 22227778

Recent insights into inherited bone marrow failure syndromes.

Shefali Parikh1, Monica Bessler.   

Abstract

PURPOSE OF REVIEW: Inherited bone marrow failure syndromes (IBMFS) are a diverse set of genetic disorders characterized by the inability of the bone marrow to produce sufficient circulating blood cells. The purpose of this review is to highlight novel findings in recent years and their impact on the understanding of IBMFS. RECENT
FINDINGS: Mutations in over 80 different genes have been associated with the development of bone marrow failure (BMF). The products of the genes mutated in IBMFS frequently participate in housekeeping pathways, which are important for cell growth and division rather than being specific for hematopoiesis. The common theme of these pathways, when disturbed, is the activation of p53, leading to cell cycle arrest, senescence, and cell death. With continued improvement in therapy for IBMFS, late complications, such as development of malignancies, are seen more frequently. This highlights the importance of understanding the affected pathways and their roles in cancer development.
SUMMARY: The recent advancement of our understanding of IBMFS has come largely through the identification of the genetic lesions responsible for disease and the investigations of their pathways. Applied in clinical practice, these findings make it possible to unambiguously identify mutation carriers even before the development of BMF and exclude or confirm a suspected clinical diagnosis for many of the more common IBMFS. The further characterization of the pathways leading to IBMFS is likely to reveal novel targets for screening tests, prognostic biomarkers, and improved and specific therapeutics.

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Year:  2012        PMID: 22227778      PMCID: PMC3926810          DOI: 10.1097/MOP.0b013e32834eca77

Source DB:  PubMed          Journal:  Curr Opin Pediatr        ISSN: 1040-8703            Impact factor:   2.856


  44 in total

1.  TERC and TERT gene mutations in patients with bone marrow failure and the significance of telomere length measurements.

Authors:  Hong-Yan Du; Elena Pumbo; Jennifer Ivanovich; Ping An; Richard T Maziarz; Ulrike M Reiss; Deborah Chirnomas; Akiko Shimamura; Adrianna Vlachos; Jeffrey M Lipton; Rakesh K Goyal; Frederick Goldman; David B Wilson; Philip J Mason; Monica Bessler
Journal:  Blood       Date:  2008-10-17       Impact factor: 22.113

Review 2.  Haploinsufficiency of ribosomal proteins and p53 activation in anemia: Diamond-Blackfan anemia and the 5q- syndrome.

Authors:  Jacqueline Boultwood; Andrea Pellagatti; James S Wainscoat
Journal:  Adv Biol Regul       Date:  2012-01

3.  Diagnosis of myelodysplastic syndrome among a cohort of 119 patients with fanconi anemia: morphologic and cytogenetic characteristics.

Authors:  Adina M Cioc; John E Wagner; Margaret L MacMillan; Todd DeFor; Betsy Hirsch
Journal:  Am J Clin Pathol       Date:  2010-01       Impact factor: 2.493

Review 4.  Telomere diseases.

Authors:  Rodrigo T Calado; Neal S Young
Journal:  N Engl J Med       Date:  2009-12-10       Impact factor: 91.245

5.  The isochromosome i(7)(q10) carrying c.258+2t>c mutation of the SBDS gene does not promote development of myeloid malignancies in patients with Shwachman syndrome.

Authors:  A Minelli; E Maserati; E Nicolis; M Zecca; L Sainati; D Longoni; F Lo Curto; G Menna; F Poli; E De Paoli; M Cipolli; F Locatelli; F Pasquali; C Danesino
Journal:  Leukemia       Date:  2009-01-15       Impact factor: 11.528

6.  Diamond-Blackfan anemia: genotype-phenotype correlations in Italian patients with RPL5 and RPL11 mutations.

Authors:  Paola Quarello; Emanuela Garelli; Adriana Carando; Alfredo Brusco; Roberto Calabrese; Carlo Dufour; Daniela Longoni; Aldo Misuraca; Luciana Vinti; Anna Aspesi; Laura Biondini; Fabrizio Loreni; Irma Dianzani; Ugo Ramenghi
Journal:  Haematologica       Date:  2009-09-22       Impact factor: 9.941

7.  Dyskeratosis congenita.

Authors:  Sharon A Savage; Blanche P Alter
Journal:  Hematol Oncol Clin North Am       Date:  2009-04       Impact factor: 3.722

8.  TCAB1: driving telomerase to Cajal bodies.

Authors:  Andrew S Venteicher; Steven E Artandi
Journal:  Cell Cycle       Date:  2009-05-23       Impact factor: 4.534

Review 9.  The genetic and molecular basis of Fanconi anemia.

Authors:  Johan P de Winter; Hans Joenje
Journal:  Mutat Res       Date:  2008-11-14       Impact factor: 2.433

10.  A conserved WD40 protein binds the Cajal body localization signal of scaRNP particles.

Authors:  Kazimierz T Tycowski; Mei-Di Shu; Abiodun Kukoyi; Joan A Steitz
Journal:  Mol Cell       Date:  2009-03-12       Impact factor: 17.970

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  14 in total

1.  Cytokine production by bone marrow mononuclear cells in inherited bone marrow failure syndromes.

Authors:  Ken Matsui; Neelam Giri; Blanche P Alter; Ligia A Pinto
Journal:  Br J Haematol       Date:  2013-07-25       Impact factor: 6.998

Review 2.  Current insights into the diagnosis and treatment of inherited bone marrow failure syndromes in China.

Authors:  Xiaofan Zhu
Journal:  Stem Cell Investig       Date:  2015-08-06

3.  Global transcriptome analyses of human and murine terminal erythroid differentiation.

Authors:  Xiuli An; Vincent P Schulz; Jie Li; Kunlu Wu; Jing Liu; Fumin Xue; Jingping Hu; Narla Mohandas; Patrick G Gallagher
Journal:  Blood       Date:  2014-03-17       Impact factor: 22.113

4.  Bone marrow failure unresponsive to bone marrow transplant is caused by mutations in thrombopoietin.

Authors:  Aaron Seo; Miri Ben-Harosh; Mehtap Sirin; Jerry Stein; Orly Dgany; Joseph Kaplelushnik; Manfred Hoenig; Ulrich Pannicke; Myriam Lorenz; Klaus Schwarz; Clemens Stockklausner; Tom Walsh; Suleyman Gulsuner; Ming K Lee; Anoop Sendamarai; Marilyn Sanchez-Bonilla; Mary-Claire King; Holger Cario; Andreas E Kulozik; Klaus-Michael Debatin; Ansgar Schulz; Hannah Tamary; Akiko Shimamura
Journal:  Blood       Date:  2017-05-30       Impact factor: 22.113

5.  Genetic predispositions to childhood leukemia.

Authors:  Elliot Stieglitz; Mignon L Loh
Journal:  Ther Adv Hematol       Date:  2013-08

6.  Loss of the Fanconi anemia-associated protein NIPA causes bone marrow failure.

Authors:  Stefanie Kreutmair; Miriam Erlacher; Geoffroy Andrieux; Rouzanna Istvanffy; Alina Mueller-Rudorf; Melissa Zwick; Tamina Rückert; Milena Pantic; Teresa Poggio; Khalid Shoumariyeh; Tony A Mueller; Hiroyuki Kawaguchi; Marie Follo; Cathrin Klingeberg; Marcin Wlodarski; Irith Baumann; Dietmar Pfeifer; Michal Kulinski; Martina Rudelius; Simone Lemeer; Bernhard Kuster; Christine Dierks; Christian Peschel; Nina Cabezas-Wallscheid; Jesus Duque-Afonso; Robert Zeiser; Michael L Cleary; Detlev Schindler; Annette Schmitt-Graeff; Melanie Boerries; Charlotte M Niemeyer; Robert Aj Oostendorp; Justus Duyster; Anna Lena Illert
Journal:  J Clin Invest       Date:  2020-06-01       Impact factor: 14.808

Review 7.  Advances in genetic studies of inherited bone marrow failure syndromes and their associated malignancies.

Authors:  Qi-Hong Yu; Shu-Ye Wang; Zhanhe Wu
Journal:  Transl Pediatr       Date:  2014-10

8.  Human mutational constraint as a tool to understand biology of rare and emerging bone marrow failure syndromes.

Authors:  Joseph H Oved; Daria V Babushok; Michele P Lambert; Nicole Wolfset; M Anna Kowalska; Mortimer Poncz; Konrad J Karczewski; Timothy S Olson
Journal:  Blood Adv       Date:  2020-10-27

9.  Fanconi anemia protein FANCI functions in ribosome biogenesis.

Authors:  Samuel B Sondalle; Simonne Longerich; Lisa M Ogawa; Patrick Sung; Susan J Baserga
Journal:  Proc Natl Acad Sci U S A       Date:  2019-01-28       Impact factor: 11.205

10.  Upregulated LINE-1 Activity in the Fanconi Anemia Cancer Susceptibility Syndrome Leads to Spontaneous Pro-inflammatory Cytokine Production.

Authors:  Christelle Brégnard; Jessica Guerra; Stéphanie Déjardin; Frank Passalacqua; Monsef Benkirane; Nadine Laguette
Journal:  EBioMedicine       Date:  2016-05-06       Impact factor: 8.143

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