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zadetkov: 291
1.
  • IFT27 Links the BBSome to I... IFT27 Links the BBSome to IFT for Maintenance of the Ciliary Signaling Compartment
    Eguether, Thibaut; San Agustin, Jovenal T.; Keady, Brian T. ... Developmental cell, 11/2014, Letnik: 31, Številka: 3
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    Vertebrate hedgehog signaling is coordinated by the differential localization of the receptors patched-1 and Smoothened in the primary cilium. Cilia assembly is mediated by intraflagellar transport ...
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2.
  • Global genetic analysis in ... Global genetic analysis in mice unveils central role for cilia in congenital heart disease
    Li, You; Klena, Nikolai T; Gabriel, George C ... Nature, 05/2015, Letnik: 521, Številka: 7553
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    Congenital heart disease (CHD) is the most prevalent birth defect, affecting nearly 1% of live births; the incidence of CHD is up to tenfold higher in human fetuses. A genetic contribution is ...
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3.
  • Wdpcp, a PCP protein requir... Wdpcp, a PCP protein required for ciliogenesis, regulates directional cell migration and cell polarity by direct modulation of the actin cytoskeleton
    Cui, Cheng; Chatterjee, Bishwanath; Lozito, Thomas P ... PLoS biology, 11/2013, Letnik: 11, Številka: 11
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    Planar cell polarity (PCP) regulates cell alignment required for collective cell movement during embryonic development. This requires PCP/PCP effector proteins, some of which also play essential ...
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4.
  • Role of cilia in the pathog... Role of cilia in the pathogenesis of congenital heart disease
    Gabriel, George C.; Young, Cullen B.; Lo, Cecilia W. Seminars in cell & developmental biology, 02/2021, Letnik: 110
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    •Cilia and cilia transduced cell signaling have key roles in congenital heart disease.•Disturbance in left-right patterning closely linked to congenital heart disease.•Shh signaling coordinates ...
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5.
  • The Role of Cilia and the C... The Role of Cilia and the Complex Genetics of Congenital Heart Disease
    Gabriel, George C; Ganapathiraju, Madhavi; Lo, Cecilia W Annual review of genomics and human genetics, 2024-May-09, 2024-05-09, 20240509
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    Congenital heart disease (CHD) can affect up to 1% of live births, and despite abundant evidence of a genetic etiology, the genetic landscape of CHD is still not well understood. A large-scale mouse ...
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6.
  • IFT25 Links the Signal-Depe... IFT25 Links the Signal-Dependent Movement of Hedgehog Components to Intraflagellar Transport
    Keady, Brian T.; Samtani, Rajeev; Tobita, Kimimasa ... Developmental cell, 05/2012, Letnik: 22, Številka: 5
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    The intraflagellar transport (IFT) system is required for building primary cilia, sensory organelles that cells use to respond to their environment. IFT particles are composed of about 20 proteins, ...
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7.
  • A detailed comparison of mo... A detailed comparison of mouse and human cardiac development
    Krishnan, Anita; Samtani, Rajeev; Dhanantwari, Preeta ... Pediatric research, 12/2014, Letnik: 76, Številka: 6
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    Mouse mutants are used to model human congenital cardiovascular disease. Few studies exist comparing normal cardiovascular development in mice vs. humans. We carried out a systematic comparative ...
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8.
  • DNAH6 and Its Interactions ... DNAH6 and Its Interactions with PCD Genes in Heterotaxy and Primary Ciliary Dyskinesia
    Li, You; Yagi, Hisato; Onuoha, Ezenwa Obi ... PLoS genetics, 02/2016, Letnik: 12, Številka: 2
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    Heterotaxy, a birth defect involving left-right patterning defects, and primary ciliary dyskinesia (PCD), a sinopulmonary disease with dyskinetic/immotile cilia in the airway are seemingly disparate ...
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9.
  • A computational framework f... A computational framework for the detection of subcortical brain dysmaturation in neonatal MRI using 3D Convolutional Neural Networks
    Ceschin, Rafael; Zahner, Alexandria; Reynolds, William ... NeuroImage, 09/2018, Letnik: 178
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    Deep neural networks are increasingly being used in both supervised learning for classification tasks and unsupervised learning to derive complex patterns from the input data. However, the successful ...
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10.
  • CCDC151 Mutations Cause Pri... CCDC151 Mutations Cause Primary Ciliary Dyskinesia by Disruption of the Outer Dynein Arm Docking Complex Formation
    Hjeij, Rim; Onoufriadis, Alexandros; Watson, Christopher M. ... American journal of human genetics, 09/2014, Letnik: 95, Številka: 3
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    A diverse family of cytoskeletal dynein motors powers various cellular transport systems, including axonemal dyneins generating the force for ciliary and flagellar beating essential to movement of ...
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