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Dive into the research topics where Maija Garnaas is active.

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Featured researches published by Maija Garnaas.


PLOS Genetics | 2011

Genetic association for renal traits among participants of African Ancestry reveals new loci for renal function

Ching-Ti Liu; Maija Garnaas; Adrienne Tin; Anna Köttgen; Nora Franceschini; Carmen A. Peralta; Ian H. de Boer; Xiaoning Lu; Elizabeth J. Atkinson; Jingzhong Ding; Michael A. Nalls; Daniel Shriner; Josef Coresh; Abdullah Kutlar; Kirsten Bibbins-Domingo; David S. Siscovick; Ermeg L. Akylbekova; Sharon B. Wyatt; Brad C. Astor; Josef Mychaleckjy; Man Li; Muredach P. Reilly; Raymond R. Townsend; Adebowale Adeyemo; Alan B. Zonderman; Mariza de Andrade; Stephen T. Turner; Thomas H. Mosley; Tamara B. Harris; Charles N. Rotimi

Chronic kidney disease (CKD) is an increasing global public health concern, particularly among populations of African ancestry. We performed an interrogation of known renal loci, genome-wide association (GWA), and IBC candidate-gene SNP association analyses in African Americans from the CARe Renal Consortium. In up to 8,110 participants, we performed meta-analyses of GWA and IBC array data for estimated glomerular filtration rate (eGFR), CKD (eGFR <60 mL/min/1.73 m2), urinary albumin-to-creatinine ratio (UACR), and microalbuminuria (UACR >30 mg/g) and interrogated the 250 kb flanking region around 24 SNPs previously identified in European Ancestry renal GWAS analyses. Findings were replicated in up to 4,358 African Americans. To assess function, individually identified genes were knocked down in zebrafish embryos by morpholino antisense oligonucleotides. Expression of kidney-specific genes was assessed by in situ hybridization, and glomerular filtration was evaluated by dextran clearance. Overall, 23 of 24 previously identified SNPs had direction-consistent associations with eGFR in African Americans, 2 of which achieved nominal significance (UMOD, PIP5K1B). Interrogation of the flanking regions uncovered 24 new index SNPs in African Americans, 12 of which were replicated (UMOD, ANXA9, GCKR, TFDP2, DAB2, VEGFA, ATXN2, GATM, SLC22A2, TMEM60, SLC6A13, and BCAS3). In addition, we identified 3 suggestive loci at DOK6 (p-value = 5.3×10−7) and FNDC1 (p-value = 3.0×10−7) for UACR, and KCNQ1 with eGFR (p = 3.6×10−6). Morpholino knockdown of kcnq1 in the zebrafish resulted in abnormal kidney development and filtration capacity. We identified several SNPs in association with eGFR in African Ancestry individuals, as well as 3 suggestive loci for UACR and eGFR. Functional genetic studies support a role for kcnq1 in glomerular development in zebrafish.


Genome Research | 2012

Mutation mapping and identification by whole genome sequencing

Ignaty Leshchiner; Kristen Alexa; Peter B. Kelsey; Ivan Adzhubei; Christina Austin-Tse; Jeffrey D. Cooney; Heidi Anderson; Matthew J. King; Rolf W. Stottmann; Maija Garnaas; Seungshin Ha; Iain A. Drummond; Barry H. Paw; Trista E. North; David R. Beier; Wolfram Goessling; Shamil R. Sunyaev

Genetic mapping of mutations in model systems has facilitated the identification of genes contributing to fundamental biological processes including human diseases. However, this approach has historically required the prior characterization of informative markers. Here we report a fast and cost-effective method for genetic mapping using next-generation sequencing that combines single nucleotide polymorphism discovery, mutation localization, and potential identification of causal sequence variants. In contrast to prior approaches, we have developed a hidden Markov model to narrowly define the mutation area by inferring recombination breakpoints of chromosomes in the mutant pool. In addition, we created an interactive online software resource to facilitate automated analysis of sequencing data and demonstrate its utility in the zebrafish and mouse models. Our novel methodology and online tools will make next-generation sequencing an easily applicable resource for mutation mapping in all model systems.


Journal of Experimental Medicine | 2012

SCF β-TRCP suppresses angiogenesis and thyroid cancer cell migration by promoting ubiquitination and destruction of VEGF receptor 2

Shavali Shaik; Carmelo Nucera; Hiroyuki Inuzuka; Daming Gao; Maija Garnaas; Gregory M. Frechette; Lauren Harris; Lixin Wan; Hidefumi Fukushima; Amjad Husain; Vania Nose; Guido Fadda; Peter M. Sadow; Wolfram Goessling; Trista E. North; Jack Lawler; Wenyi Wei

The E3 ubiquitin ligase β-TRCP, acting in concert with casein kinase I, drives ubiquitination and degradation of VEGFR2, and renders human papillary thyroid cancer cells resistant to the VEGFR2 inhibitor sorafenib.


Blood | 2013

Glucose metabolism impacts the spatiotemporal onset and magnitude of HSC induction in vivo

James M. Harris; Virginie Esain; Gregory M. Frechette; Lauren Harris; Andrew G. Cox; Mauricio Cortes; Maija Garnaas; Kelli J. Carroll; Claire C. Cutting; Tahsin M. Khan; Phillip M. Elks; Stephen A. Renshaw; Bryan C. Dickinson; Christopher J. Chang; Michael P. Murphy; Barry H. Paw; Matthew G. Vander Heiden; Wolfram Goessling; Trista E. North

Many pathways regulating blood formation have been elucidated, yet how each coordinates with embryonic biophysiology to modulate the spatiotemporal production of hematopoietic stem cells (HSCs) is currently unresolved. Here, we report that glucose metabolism impacts the onset and magnitude of HSC induction in vivo. In zebrafish, transient elevations in physiological glucose levels elicited dose-dependent effects on HSC development, including enhanced runx1 expression and hematopoietic cluster formation in the aorta-gonad-mesonephros region; embryonic-to-adult transplantation studies confirmed glucose increased functional HSCs. Glucose uptake was required to mediate the enhancement in HSC development; likewise, metabolic inhibitors diminished nascent HSC production and reversed glucose-mediated effects on HSCs. Increased glucose metabolism preferentially impacted hematopoietic and vascular targets, as determined by gene expression analysis, through mitochondrial-derived reactive oxygen species (ROS)-mediated stimulation of hypoxia-inducible factor 1α (hif1α). Epistasis assays demonstrated that hif1α regulates HSC formation in vivo and mediates the dose-dependent effects of glucose metabolism on the timing and magnitude of HSC production. We propose that this fundamental metabolic-sensing mechanism enables the embryo to respond to changes in environmental energy input and adjust hematopoietic output to maintain embryonic growth and ensure viability.


Nature Cell Biology | 2015

Systematic proteomics of the VCP–UBXD adaptor network identifies a role for UBXN10 in regulating ciliogenesis

Malavika Raman; Mikhail Sergeev; Maija Garnaas; John R. Lydeard; Edward L. Huttlin; Wolfram Goessling; Jagesh V. Shah; J. Wade Harper

The AAA-ATPase VCP (also known as p97 or CDC48) uses ATP hydrolysis to ‘segregate’ ubiquitylated proteins from their binding partners. VCP acts through UBX-domain-containing adaptors that provide target specificity, but the targets and functions of UBXD proteins remain poorly understood. Through systematic proteomic analysis of UBXD proteins in human cells, we reveal a network of over 195 interacting proteins, implicating VCP in diverse cellular pathways. We have explored one such complex between an unstudied adaptor UBXN10 and the intraflagellar transport B (IFT-B) complex, which regulates anterograde transport into cilia. UBXN10 localizes to cilia in a VCP-dependent manner and both VCP and UBXN10 are required for ciliogenesis. Pharmacological inhibition of VCP destabilized the IFT-B complex and increased trafficking rates. Depletion of UBXN10 in zebrafish embryos causes defects in left–right asymmetry, which depends on functional cilia. This study provides a resource for exploring the landscape of UBXD proteins in biology and identifies an unexpected requirement for VCP–UBXN10 in ciliogenesis.


Developmental Biology | 2012

Rargb regulates organ laterality in a zebrafish model of right atrial isomerism.

Maija Garnaas; Claire C. Cutting; Alison Meyers; Peter B. Kelsey; James M. Harris; Trista E. North; Wolfram Goessling

Developmental signals determine organ morphology and position during embryogenesis. To discover novel modifiers of liver development, we performed a chemical genetic screen in zebrafish and identified retinoic acid as a positive regulator of hepatogenesis. Knockdown of the four RA receptors revealed that all receptors affect liver formation, however specific receptors exert differential effects. Rargb knockdown results in bilateral livers but does not impact organ size, revealing a unique role for Rargb in conferring left-right positional information. Bilateral populations of hepatoblasts are detectable in rargb morphants, indicating Rargb acts during hepatic specification to position the liver, and primitive endoderm is competent to form liver on both sides. Hearts remain at the midline and gut looping is perturbed in rargb morphants, suggesting Rargb affects lateral plate mesoderm migration. Overexpression of Bmp during somitogenesis similarly results in bilateral livers and midline hearts, and inhibition of Bmp signaling rescues the rargb morphant phenotype, indicating Rargb functions upstream of Bmp to regulate organ sidedness. Loss of rargb causes biliary and organ laterality defects as well as asplenia, paralleling symptoms of the human condition right atrial isomerism. Our findings uncover a novel role for RA in regulating organ laterality and provide an animal model of one form of human heterotaxia.


Nature Communications | 2015

ANKS6 is the critical activator of NEK8 kinase in embryonic situs determination and organ patterning

Peter G. Czarnecki; George C. Gabriel; Danielle K. Manning; Mikhail Sergeev; Kristi Lemke; Nikolai T. Klena; Xiaoqin Liu; Yu Chen; You Li; Jovenal T. San Agustin; Maija Garnaas; Richard Francis; Kimimasa Tobita; Wolfram Goessling; Gregory J. Pazour; Cecilia W. Lo; David R. Beier; Jagesh V. Shah

The ciliary kinase NEK8 plays a critical role in situs determination and cystic kidney disease, yet its exact function remains unknown. In this study we identify ANKS6 as a target and activator of NEK8. ANKS6 requires NEK8 for localizing to the ciliary inversin compartment (IC) and activates NEK8 by binding to its kinase domain. Here we demonstrate the functional importance of this interaction through the analysis of two novel mouse mutations, Anks6Streaker and Nek8Roc. Both display heterotaxy, cardiopulmonary malformations and cystic kidneys, a syndrome also characteristic of mutations in Invs and Nphp3, the other known components of the IC. The Anks6Strkr mutation decreases ANKS6 interaction with NEK8, precluding NEK8 activation. The Nek8Roc mutation inactivates NEK8 kinase function while preserving ANKS6 localization to the IC. Together, these data reveal the crucial role of NEK8 kinase activation within the IC, promoting proper left-right patterning, cardiopulmonary development and renal morphogenesis.


Developmental Cell | 2014

Estrogen Defines the Dorsal-Ventral Limit of VEGF Regulation to Specify the Location of the Hemogenic Endothelial Niche

Kelli J. Carroll; Virginie Esain; Maija Garnaas; Mauricio Cortes; Michael Dovey; Sahar Nissim; Gregory M. Frechette; Sarah Y. Liu; Wanda Kwan; Claire C. Cutting; James M. Harris; Daniel A. Gorelick; Marnie E. Halpern; Nathan D. Lawson; Wolfram Goessling; Trista E. North

Genetic control of hematopoietic stem and progenitor cell (HSPC) function is increasingly understood; however, less is known about the interactions specifying the embryonic hematopoietic niche. Here, we report that 17β-estradiol (E2) influences production of runx1+ HSPCs in the AGM region by antagonizing VEGF signaling and subsequent assignment of hemogenic endothelial (HE) identity. Exposure to exogenous E2 during vascular niche development significantly disrupted flk1+ vessel maturation, ephrinB2+ arterial identity, and specification of scl+ HE by decreasing expression of VEGFAa and downstream arterial Notch-pathway components; heat shock induction of VEGFAa/Notch rescued E2-mediated hematovascular defects. Conversely, repression of endogenous E2 activity increased somitic VEGF expression and vascular target regulation, shifting assignment of arterial/venous fate and HE localization; blocking E2 signaling allowed venous production of scl+/runx1+ cells, independent of arterial identity acquisition. Together, these data suggest that yolk-derived E2 sets the ventral boundary of hemogenic vascular niche specification by antagonizing the dorsal-ventral regulatory limits of VEGF.


Journal of The American Society of Nephrology | 2014

Sequencing of LRP2 Reveals Multiple Rare Variants Associated with Urinary Trefoil Factor-3

Gearoid M. McMahon; Matthias Olden; Maija Garnaas; Qiong Yang; Xuan Liu; Shih-Jen Hwang; Martin G. Larson; Wolfram Goessling; Caroline S. Fox

Novel biomarkers are being investigated to identify patients with kidney disease. We measured a panel of 13 urinary biomarkers in participants from the Offspring Cohort of the Framingham Heart Study. Using an Affymetrix chip with imputation to 2.5 M single-nucleotide polymorphisms (SNPs), we conducted a GWAS of these biomarkers (n=2640) followed by exonic sequencing and genotyping. Functional studies in zebrafish were used to investigate histologic correlation with renal function. Across all 13 biomarkers, there were 97 significant SNPs at three loci. Lead SNPs at each locus were rs6555820 (P=6.7×10(-49); minor allele frequency [MAF]=0.49) in HAVCR1 (associated with kidney injury molecule-1), rs7565788 (P=2.15×10(-16); MAF=0.22) in LRP2 (associated with trefoil factor 3 [TFF3]), and rs11048230 (P=4.77×10(-8); MAF=0.10) in an intergenic region near RASSF8 (associated with vascular endothelial growth factor). Validation in the CKDGen Consortium (n=67,093) showed that only rs7565788 at LRP2, which encodes megalin, was associated with eGFR (P=0.003). Sequencing of exons 16-72 of LRP2 in 200 unrelated individuals at extremes of urinary TFF3 levels identified 197 variants (152 rare; MAF<0.05), 31 of which (27 rare) were nonsynonymous. In aggregate testing, rare variants were associated with urinary TFF3 levels (P=0.003), and the lead GWAS signal was not explained by these variants. Knockdown of LRP2 in zebrafish did not alter the renal phenotype in static or kidney injury models. In conclusion, this study revealed common variants associated with urinary levels of TFF3, kidney injury molecule-1, and vascular endothelial growth factor and identified a cluster of rare variants independently associated with TFF3.


Nature Cell Biology | 2016

Erratum: Corrigendum: Systematic proteomics of the VCP–UBXD adaptor network identifies a role for UBXN10 in regulating ciliogenesis

Malavika Raman; Mikhail Sergeev; Maija Garnaas; John R. Lydeard; Edward L. Huttlin; Wolfram Goessling; Jagesh V. Shah; J. Wade Harper

Nat. Cell Biol. 17, 558–568 (2015); published online 6 April 2015; corrected after print 1 February 2016 In the version of this Article originally published, the sentence ‘13% of GFP–Vas granules contain nos mRNAs and 11% contain cycB’ in the caption of Fig. 4h–j was incorrect; it should have read ‘69% of GFP–Vas granules contain nos and 51% contain cycB’. This has been corrected in all online versions of the Article.

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Trista E. North

Beth Israel Deaconess Medical Center

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Gregory M. Frechette

Beth Israel Deaconess Medical Center

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Claire C. Cutting

Brigham and Women's Hospital

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James M. Harris

Beth Israel Deaconess Medical Center

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Lauren Harris

Beth Israel Deaconess Medical Center

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Michael Dovey

Beth Israel Deaconess Medical Center

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Virginie Esain

Beth Israel Deaconess Medical Center

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Barry H. Paw

Brigham and Women's Hospital

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