Literature DB >> 32556286

Sequencing of RNA in single cells reveals a distinct transcriptome signature of hematopoiesis in GATA2 deficiency.

Zhijie Wu1, Shouguo Gao1, Carrie Diamond1, Sachiko Kajigaya1, Jinguo Chen2, Rongye Shi3, Cindy Palmer4, Amy P Hsu4, Katherine R Calvo5, Dennis D Hickstein6, Steven M Holland4, Neal S Young1.   

Abstract

Constitutional GATA2 deficiency caused by heterozygous germline GATA2 mutations has a broad spectrum of clinical phenotypes, including systemic infections, lymphedema, cytopenias, and myeloid neoplasms. Genotype-phenotype correlation is not well understood mechanistically in GATA2 deficiency. We performed whole transcriptome sequencing of single hematopoietic stem and progenitor cells from 8 patients, who had pathogenic GATA2 mutations and myelodysplasia. Mapping patients' cells onto normal hematopoiesis, we observed deficiency in lymphoid/myeloid progenitors, also evident from highly constrained gene correlations. HSPCs of patients exhibited distinct patterns of gene expression and coexpression compared with counterparts from healthy donors. Distinct lineages showed differently altered transcriptional profiles. Stem cells in patients had dysregulated gene expression related to apoptosis, cell cycle, and quiescence; increased expression of erythroid/megakaryocytic priming genes; and decreased lymphoid priming genes. The prominent deficiency in lympho-myeloid lineages in GATA2 deficiency appeared at least partly due to the expression of aberrant gene programs in stem cells prior to lineage commitment. We computationally imputed cells with chromosomal abnormalities and determined their gene expression; DNA repair genes were downregulated in trisomy 8 cells, potentially rendering these cells vulnerable to second-hit somatic mutations and additional chromosomal abnormalities. Cells with complex cytogenetic abnormalities showed defects in genes related to multilineage differentiation and cell cycle. Single-cell RNA sequencing is powerful in resolving transcriptomes of cell subpopulations despite a paucity of cells in marrow failure. Our study discloses previously uncharacterized transcriptome signatures of stem cells and progenitors in GATA2 deficiency, providing a broad perspective of potential mechanisms by which germline mutations modulate early hematopoiesis in a human disease. This trial was registered at www.clinicaltrials.gov as NCT01905826, NCT01861106, and NCT00001620.

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Year:  2020        PMID: 32556286      PMCID: PMC7322959          DOI: 10.1182/bloodadvances.2019001352

Source DB:  PubMed          Journal:  Blood Adv        ISSN: 2473-9529


  59 in total

Review 1.  The role of the GATA2 transcription factor in normal and malignant hematopoiesis.

Authors:  Carmen Vicente; Ana Conchillo; María A García-Sánchez; María D Odero
Journal:  Crit Rev Oncol Hematol       Date:  2011-05-24       Impact factor: 6.312

2.  Mutations in GATA2 are associated with the autosomal dominant and sporadic monocytopenia and mycobacterial infection (MonoMAC) syndrome.

Authors:  Amy P Hsu; Elizabeth P Sampaio; Javed Khan; Katherine R Calvo; Jacob E Lemieux; Smita Y Patel; David M Frucht; Donald C Vinh; Roger D Auth; Alexandra F Freeman; Kenneth N Olivier; Gulbu Uzel; Christa S Zerbe; Christine Spalding; Stefania Pittaluga; Mark Raffeld; Douglas B Kuhns; Li Ding; Michelle L Paulson; Beatriz E Marciano; Juan C Gea-Banacloche; Jordan S Orange; Jennifer Cuellar-Rodriguez; Dennis D Hickstein; Steven M Holland
Journal:  Blood       Date:  2011-06-13       Impact factor: 22.113

3.  Densely interconnected transcriptional circuits control cell states in human hematopoiesis.

Authors:  Noa Novershtern; Aravind Subramanian; Lee N Lawton; Raymond H Mak; W Nicholas Haining; Marie E McConkey; Naomi Habib; Nir Yosef; Cindy Y Chang; Tal Shay; Garrett M Frampton; Adam C B Drake; Ilya Leskov; Bjorn Nilsson; Fred Preffer; David Dombkowski; John W Evans; Ted Liefeld; John S Smutko; Jianzhu Chen; Nir Friedman; Richard A Young; Todd R Golub; Aviv Regev; Benjamin L Ebert
Journal:  Cell       Date:  2011-01-21       Impact factor: 41.582

4.  Single-cell messenger RNA sequencing reveals rare intestinal cell types.

Authors:  Dominic Grün; Anna Lyubimova; Lennart Kester; Kay Wiebrands; Onur Basak; Nobuo Sasaki; Hans Clevers; Alexander van Oudenaarden
Journal:  Nature       Date:  2015-08-19       Impact factor: 49.962

5.  GATA2 haploinsufficiency caused by mutations in a conserved intronic element leads to MonoMAC syndrome.

Authors:  Amy P Hsu; Kirby D Johnson; E Liana Falcone; Rajendran Sanalkumar; Lauren Sanchez; Dennis D Hickstein; Jennifer Cuellar-Rodriguez; Jacob E Lemieux; Christa S Zerbe; Emery H Bresnick; Steven M Holland
Journal:  Blood       Date:  2013-03-15       Impact factor: 22.113

6.  Autosomal dominant and sporadic monocytopenia with susceptibility to mycobacteria, fungi, papillomaviruses, and myelodysplasia.

Authors:  Donald C Vinh; Smita Y Patel; Gulbu Uzel; Victoria L Anderson; Alexandra F Freeman; Kenneth N Olivier; Christine Spalding; Stephen Hughes; Stefania Pittaluga; Mark Raffeld; Lynn R Sorbara; Houda Z Elloumi; Douglas B Kuhns; Maria L Turner; Edward W Cowen; Danielle Fink; Debra Long-Priel; Amy P Hsu; Li Ding; Michelle L Paulson; Adeline R Whitney; Elizabeth P Sampaio; David M Frucht; Frank R DeLeo; Steven M Holland
Journal:  Blood       Date:  2009-12-29       Impact factor: 22.113

7.  The dynamics and regulators of cell fate decisions are revealed by pseudotemporal ordering of single cells.

Authors:  Cole Trapnell; Davide Cacchiarelli; Jonna Grimsby; Prapti Pokharel; Shuqiang Li; Michael Morse; Niall J Lennon; Kenneth J Livak; Tarjei S Mikkelsen; John L Rinn
Journal:  Nat Biotechnol       Date:  2014-03-23       Impact factor: 54.908

8.  A molecular census of arcuate hypothalamus and median eminence cell types.

Authors:  John N Campbell; Evan Z Macosko; Henning Fenselau; Tune H Pers; Anna Lyubetskaya; Danielle Tenen; Melissa Goldman; Anne M J Verstegen; Jon M Resch; Steven A McCarroll; Evan D Rosen; Bradford B Lowell; Linus T Tsai
Journal:  Nat Neurosci       Date:  2017-02-06       Impact factor: 24.884

9.  Simultaneous epitope and transcriptome measurement in single cells.

Authors:  Marlon Stoeckius; Christoph Hafemeister; William Stephenson; Brian Houck-Loomis; Pratip K Chattopadhyay; Harold Swerdlow; Rahul Satija; Peter Smibert
Journal:  Nat Methods       Date:  2017-07-31       Impact factor: 28.547

10.  Statistical methods for gene set co-expression analysis.

Authors:  YounJeong Choi; Christina Kendziorski
Journal:  Bioinformatics       Date:  2009-08-18       Impact factor: 6.937

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  5 in total

Review 1.  Gene expression at a single-molecule level: implications for myelodysplastic syndromes and acute myeloid leukemia.

Authors:  Justin C Wheat; Ulrich Steidl
Journal:  Blood       Date:  2021-08-26       Impact factor: 25.476

2.  A patient with a germline GATA2 mutation and primary myelofibrosis.

Authors:  Cyrill V Rütsche; Eugenia Haralambieva; Veronika Lysenko; Stefan Balabanov; Alexandre P A Theocharides
Journal:  Blood Adv       Date:  2021-02-09

3.  Comparative Transcriptomic Analysis of the Hematopoietic System between Human and Mouse by Single Cell RNA Sequencing.

Authors:  Shouguo Gao; Zhijie Wu; Jeerthi Kannan; Liza Mathews; Xingmin Feng; Sachiko Kajigaya; Neal S Young
Journal:  Cells       Date:  2021-04-21       Impact factor: 6.600

Review 4.  Why Single-Cell Sequencing Has Promise in MDS.

Authors:  Xuan Zhang; H Leighton Grimes
Journal:  Front Oncol       Date:  2021-12-02       Impact factor: 6.244

5.  Conditionally pathogenic genetic variants of a hematopoietic disease-suppressing enhancer.

Authors:  Alexandra A Soukup; Daniel R Matson; Peng Liu; Kirby D Johnson; Emery H Bresnick
Journal:  Sci Adv       Date:  2021-12-10       Impact factor: 14.136

  5 in total

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