👤 Sara Bandres-Ciga

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articles
Lietsel Jones, Catalina Cerquera-Cleves, Artur Fs Schuh +10 more · 2025 · medRxiv : the preprint server for health sciences · Cold Spring Harbor Laboratory · added 2026-04-24
Emerging evidence suggests that the genetic architecture of Alzheimer's (AD) and Parkinson's diseases (PD) risk varies across ancestries. This study seeks to explore distinct and universal genetic tar Show more
Emerging evidence suggests that the genetic architecture of Alzheimer's (AD) and Parkinson's diseases (PD) risk varies across ancestries. This study seeks to explore distinct and universal genetic targets across individuals of Latino, African/African Admixed, East Asian, and European populations by implementing Population Attributable Risk (PAR) comparisons on summary statistics from genome-wide association studies (GWAS). PAR was calculated for the most significant disease variants using summary statistics derived from select multi-ancestry GWAS meta-analyses, followed by fine-mapping analysis to validate genetic contribution of disease variants to European, African/African Admixed, East Asian, and Latino individuals. For both AD, Show less
no PDF DOI: 10.1101/2024.09.23.24314240
VPS13C
Jonggeol Jeffrey Kim, Sara Bandres-Ciga, Karl Heilbron +3 more · 2024 · NPJ Parkinson's disease · Nature · added 2026-04-24
Hyposmia (decreased smell function) is a common early symptom of Parkinson's disease (PD). The shared genetic architecture between hyposmia and PD is unknown. We leveraged genome-wide association stud Show more
Hyposmia (decreased smell function) is a common early symptom of Parkinson's disease (PD). The shared genetic architecture between hyposmia and PD is unknown. We leveraged genome-wide association study (GWAS) results for self-assessment of 'ability to smell' and PD diagnosis to determine shared genetic architecture between the two traits. Linkage disequilibrium score (LDSC) regression found that the sense of smell negatively correlated at a genome-wide level with PD. Local Analysis of [co]Variant Association (LAVA) found negative correlations in four genetic loci near GBA1, ANAPC4, SNCA, and MAPT, indicating shared genetic liability only within a subset of prominent PD risk genes. Using Mendelian randomization, we found evidence for a strong causal relationship between PD and liability towards poorer sense of smell, but weaker evidence for the reverse direction. This work highlights the heritability of olfactory function and its relationship with PD heritability and provides further insight into the association between PD and hyposmia. Show less
đź“„ PDF DOI: 10.1038/s41531-024-00838-4
ANAPC4
Jonggeol J Kim, Sara Bandres-Ciga, Karl Heilbron +3 more · 2023 · medRxiv : the preprint server for health sciences · Cold Spring Harbor Laboratory · added 2026-04-24
Hyposmia (loss of smell) is a common early symptom of Parkinson's disease (PD). The shared genetic architecture between hyposmia and PD is unknown. We leveraged genome-wide association study (GWAS) re Show more
Hyposmia (loss of smell) is a common early symptom of Parkinson's disease (PD). The shared genetic architecture between hyposmia and PD is unknown. We leveraged genome-wide association study (GWAS) results for self-assessment of 'ability to smell' and PD diagnosis. Linkage disequilibrium score regression (LDSC) and Local Analysis of [co]Variant Association (LAVA) were used to identify genome-wide and local genetic correlations. Mendelian randomization was used to identify potential causal relationships. LDSC found that sense of smell negatively correlated at a genome-wide level with PD. LAVA found negative correlations in four genetic loci near Hyposmia and PD share genetic liability in only a subset of the major PD risk genes. While there was definitive evidence that PD can lower the sense of smell, there was only suggestive evidence for the reverse. This work highlights the heritability of olfactory function and its relationship with PD heritability and provides further insight into the association between PD and hyposmia. Show less
đź“„ PDF DOI: 10.1101/2023.10.18.23297218
ANAPC4
Kathryn R Bowles, Derian A Pugh, Yiyuan Liu +18 more · 2022 · Molecular neurodegeneration · BioMed Central · added 2026-04-24
Parkinson's disease (PD) is genetically associated with the H1 haplotype of the MAPT 17q.21.31 locus, although the causal gene and variants underlying this association have not been identified. To bet Show more
Parkinson's disease (PD) is genetically associated with the H1 haplotype of the MAPT 17q.21.31 locus, although the causal gene and variants underlying this association have not been identified. To better understand the genetic contribution of this region to PD and to identify novel mechanisms conferring risk for the disease, we fine-mapped the 17q21.31 locus by constructing discrete haplotype blocks from genetic data. We used digital PCR to assess copy number variation associated with PD-associated blocks, and used human brain postmortem RNA-seq data to identify candidate genes that were then further investigated using in vitro models and human brain tissue. We identified three novel H1 sub-haplotype blocks across the 17q21.31 locus associated with PD risk. Protective sub-haplotypes were associated with increased LRRC37A/2 copy number and expression in human brain tissue. We found that LRRC37A/2 is a membrane-associated protein that plays a role in cellular migration, chemotaxis and astroglial inflammation. In human substantia nigra, LRRC37A/2 was primarily expressed in astrocytes, interacted directly with soluble α-synuclein, and co-localized with Lewy bodies in PD brain tissue. These data indicate that a novel candidate gene, LRRC37A/2, contributes to the association between the 17q21.31 locus and PD via its interaction with α-synuclein and its effects on astrocytic function and inflammatory response. These data are the first to associate the genetic association at the 17q21.31 locus with PD pathology, and highlight the importance of variation at the 17q21.31 locus in the regulation of multiple genes other than MAPT and KANSL1, as well as its relevance to non-neuronal cell types. Show less
đź“„ PDF DOI: 10.1186/s13024-022-00551-x
KANSL1
Sara Bandres-Ciga, Sarah Ahmed, Marya S Sabir +94 more · 2019 · Movement disorders : official journal of the Movement Disorder Society · Wiley · added 2026-04-24
Sara Bandres-Ciga, Sarah Ahmed, Marya S Sabir, Cornelis Blauwendraat, Astrid D Adarmes-Gómez, Inmaculada Bernal-Bernal, Marta Bonilla-Toribio, Dolores Buiza-Rueda, Fátima Carrillo, Mario Carrión-Claro, Pilar Gómez-Garre, Silvia Jesús, Miguel A Labrador-Espinosa, Daniel Macias, Carlota Méndez-Del-Barrio, Teresa Periñán-Tocino, Cristina Tejera-Parrado, Laura Vargas-González, Monica Diez-Fairen, Ignacio Alvarez, Juan Pablo Tartari, Mariateresa Buongiorno, Miquel Aguilar, Ana Gorostidi, Jesús Alberto Bergareche, Elisabet Mondragon, Ana Vinagre-Aragon, Ioana Croitoru, Javier Ruiz-Martínez, Oriol Dols-Icardo, Jaime Kulisevsky, Juan Marín-Lahoz, Javier Pagonabarraga, Berta Pascual-Sedano, Mario Ezquerra, Ana Cámara, Yaroslau Compta, Manel Fernández, Rubén Fernández-Santiago, Esteban Muñoz, Eduard Tolosa, Francesc Valldeoriola, Isabel Gonzalez-Aramburu, Antonio Sanchez Rodriguez, María Sierra, Manuel Menéndez-González, Marta Blazquez, Ciara Garcia, Esther Suarez-San Martin, Pedro García-Ruiz, Juan Carlos Martínez-Castrillo, Lydia Vela-Desojo, Clara Ruz, Francisco Javier Barrero, Francisco Escamilla-Sevilla, Adolfo Mínguez-Castellanos, Debora Cerdan, Cesar Tabernero, Maria Jose Gomez Heredia, Francisco Perez Errazquin, Manolo Romero-Acebal, Cici Feliz, Jose Luis Lopez-Sendon, Marina Mata, Irene Martínez Torres, Jonggeol Jeffrey Kim, Clifton L Dalgard, American Genome Center, Janet Brooks, Sara Saez-Atienzar, J Raphael Gibbs, Rafael Jorda, Juan A Botia, Luis Bonet-Ponce, Karen E Morrison, Carl Clarke, Manuela Tan, Huw Morris, Connor Edsall, Dena Hernandez, Javier Simon-Sanchez, Mike A Nalls, Sonja W Scholz, Adriano Jimenez-Escrig, Jacinto Duarte, Francisco Vives, Raquel Duran, Janet Hoenicka, Victoria Alvarez, Jon Infante, Maria José Marti, Jordi Clarimón, Adolfo López de Munain, Pau Pastor, Pablo Mir, Andrew Singleton, International Parkinson Disease Genomics Consortium Show less
The Iberian Peninsula stands out as having variable levels of population admixture and isolation, making Spain an interesting setting for studying the genetic architecture of neurodegenerative disease Show more
The Iberian Peninsula stands out as having variable levels of population admixture and isolation, making Spain an interesting setting for studying the genetic architecture of neurodegenerative diseases. To perform the largest PD genome-wide association study restricted to a single country. We performed a GWAS for both risk of PD and age at onset in 7,849 Spanish individuals. Further analyses included population-specific risk haplotype assessments, polygenic risk scoring through machine learning, Mendelian randomization of expression, and methylation data to gain insight into disease-associated loci, heritability estimates, genetic correlations, and burden analyses. We identified a novel population-specific genome-wide association study signal at PARK2 associated with age at onset, which was likely dependent on the c.155delA mutation. We replicated four genome-wide independent signals associated with PD risk, including SNCA, LRRK2, KANSL1/MAPT, and HLA-DQB1. A significant trend for smaller risk haplotypes at known loci was found compared to similar studies of non-Spanish origin. Seventeen PD-related genes showed functional consequence by two-sample Mendelian randomization in expression and methylation data sets. Long runs of homozygosity at 28 known genes/loci were found to be enriched in cases versus controls. Our data demonstrate the utility of the Spanish risk haplotype substructure for future fine-mapping efforts, showing how leveraging unique and diverse population histories can benefit genetic studies of complex diseases. The present study points to PARK2 as a major hallmark of PD etiology in Spain. © 2019 International Parkinson and Movement Disorder Society. Show less
đź“„ PDF DOI: 10.1002/mds.27864
KANSL1