Pathology of Genetically Engineered and Other Mutant Mice. Группа авторов

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Название Pathology of Genetically Engineered and Other Mutant Mice
Автор произведения Группа авторов
Жанр Биология
Серия
Издательство Биология
Год выпуска 0
isbn 9781119624592



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all types of cells, and their primary function is to transduce signals from the environment or surrounding cells. For many decades after their discovery, it was thought that the immotile primary cilia were purely vestigial organelles. However, it is now clear that defects in immotile primary cilia, which have a variety of different sensory functions [44], can cause myriad inherited diseases that simultaneously involve several different organ systems and thus display pleiotropic phenotypes. These diseases range from severe developmental defects resulting in embryonic or perinatal lethality to diseases such as polycystic kidney disease (PKD), retinal degeneration, hepatic and pancreatic cysts, skeletal anomalies, brain malformations such as microcephaly and cerebellar dysplasia, and left–right axis defects. Ciliopathies are also associated with other types of lesions affecting the eye, central nervous system (CNS), liver, and pancreas.

      The sensory functions of primary cilia depend on the coordinated trafficking and temporal localization of specific receptors and their associated signal transduction modules in the cilium. Primary cilia sense and transduce environmental signals via several signaling pathways, including HH, GPCR, WNT, receptor tyrosine kinase, and transforming growth factor β (TGFβ)/bone morphogenetic protein (BMP) signaling [8]. The central importance of these pathways in regulating key processes in development and tissue homeostasis account for the pleomorphic developmental disorders and diseases that accompany primary cilia defects [45]. The role of primary cilia in HH signaling is probably the best understood at this time. There are three major protein ligands in the HH system: SHH, Indian Hedgehog (IHH), and Desert Hedgehog (DHH). Of these, SHH signaling is critical to spatial patterning of the neuroepithelium, cellular identity in the CNS, axonal guidance, wiring of the neural network, and neuronal activity. Primary cilia defects in mice with mutations in SHH are associated with several defects in brain development, such as defective neural patterning, cerebellar hypoplasia, and defective hippocampal neurogenesis. IHH and DHH are both essential for normal craniofacial development, and mutations in several HH‐related ciliary proteins result in skeletal and craniofacial deformities [46].

      Cystic Kidney Diseases

Photo depicts nephronophthisis. Cystic tubules with interstitial inflammation and fibrosis in a normal sized kidney are associated with attrition of renal epithelium due to dysfunctional primary cilia.

      Retinal Degeneration

      Retinal degeneration is the most common manifestation of ciliary dysfunction in the eye, although coloboma and microphthalmia can occur in some ciliopathies as a result of defective HH signaling. In the retinal photoreceptor cells, modified primary cilia form the photoreceptor outer segments and express proteins that are specialized for phototransduction. The outer segments are specialized sensory cilia, and deficient morphogenesis and/or dysfunction of these sensory cilia caused by mutations in a wide range of photoreceptor‐specific and ciliary genes can result in inherited retinal degenerations [53]. Almost all of the proteins involved in maintenance of the outersegment and phototransduction (most notably rhodopsin) are synthesized in the inner segment and must be transported to the outer segment via the connecting cilium. As a result, the efficient transport of cargo along the connecting cilium is essential for the assembly and maintenance of the photoreceptor outer segment. Mutations in several genes that encode proteins localized to the connecting cilium and/or its basal body can disrupt this process of intersegmental transport and result in the mislocalization of outer segment proteins and disorganization of the outer segments [54–58], which often precedes photoreceptor degeneration [59, 60]. In addition, the axoneme of the connecting cilium extends into the OS and is thought to establish the proper alignment of the membranous disks containing rhodopsin and other proteins required for phototransduction [61].

Photo depicts eye. Macrophages within the outer segment of photoreceptor are present at the earlier stages of retinal degeneration.

      Heart Defects

Photo depicts eye. Advanced retinal degeneration there is characterized by a marked reduction in the thickness of the outer nuclear 
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