Suzanne de Bruijn

310 Chapter 6 58. Miga, K.H., Koren, S., Rhie, A., Vollger, M.R., Gershman, A., Bzikadze, A. et al. Telomere-to- telomere assembly of a complete human X chromosome. Nature 585 , 79-84 (2020). 59. Booth, K.T., Azaiez, H., Jahan, I., Smith, R.J.H. & Fritzsch, B. Intracellular regulome variability along the organ of corti: Evidence, approaches, challenges, and perspective. Frontiers in Genetics 9 , 156-156 (2018). 60. Zhang, L., Dong, Y., Wang, Y., Gao, J., Lv, J., Sun, J. et al. Long non-coding RNAs in ocular diseases: new and potential therapeutic targets. FEBS Journal 286 , 2261-2272 (2019). 61. Guo, H., Ingolia, N.T., Weissman, J.S. & Bartel, D.P. Mammalian microRNAs predominantly act to decrease target mRNA levels. Nature 466 , 835-840 (2010). 62. Mittal, R., Liu, G., Polineni, S.P., Bencie, N., Yan, D. & Liu, X.Z. Role of microRNAs in inner ear development and hearing loss. Gene 686 , 49-55 (2019). 63. Karali, M., Persico, M., Mutarelli, M., Carissimo, A., Pizzo, M., Singh Marwah, V. et al. High- resolution analysis of the human retina miRNome reveals isomiR variations and novel microRNAs. Nucleic Acids Research 44 , 1525-1540 (2016). 64. Mencía, A., Modamio-Høybjør, S., Redshaw, N., Morín, M., Mayo-Merino, F., Olavarrieta, L. et al. Mutations in the seed region of human miR-96 are responsible for nonsyndromic progressive hearing loss. Nature Genetics 41 , 609-613 (2009). 65. Conte, I., Hadfield, K.D., Barbato, S., Carrella, S., Pizzo, M., Bhat, R.S. et al. MiR-204 is responsible for inherited retinal dystrophy associated with ocular coloboma. Proceedings of the National Academy of Sciences 112 , e3236-e3245 (2015). 66. Novikova, I.V., Hennelly, S.P. & Sanbonmatsu, K.Y. Sizing up long non-coding RNAs: do lncRNAs have secondary and tertiary structure? Bioarchitecture 2 , 189-199 (2012). 67. Quinn, J.J. & Chang, H.Y. Unique features of long non-coding RNA biogenesis and function. Nature Reviews Genetics 17 , 47-62 (2016). 68. Schrauwen, I., Hasin-Brumshtein, Y., Corneveaux, J.J., Ohmen, J., White, C., Allen, A.N. et al. A comprehensive catalogue of the coding and non-coding transcripts of the human inner ear. Hearing Research 333 , 266-274 (2016). 69. Farkas, M.H., Grant, G.R., White, J.A., Sousa, M.E., Consugar, M.B. & Pierce, E.A. Transcriptome analyses of the human retina identify unprecedented transcript diversity and 3.5 Mb of novel transcribed sequence via significant alternative splicing and novel genes. BMC Genomics 14 , 486 (2013). 70. Derrien, T., Johnson, R., Bussotti, G., Tanzer, A., Djebali, S., Tilgner, H. et al. The GENCODE v7 catalog of human long noncoding RNAs: analysis of their gene structure, evolution, and expression. Genome Research 22 , 1775-1789 (2012). 71. Ushakov, K., Koffler-Brill, T., Rom, A., Perl, K., Ulitsky, I. & Avraham, K.B. Genome-wide identification and expression profiling of long non-coding RNAs in auditory and vestibular systems. Scientific Reports 7 , 8637 (2017). 72. Wang, L., Gong, J., Wang, J., Dan, J. & Wang, P. Long non-coding RNA MALAT1 alleviates the elevated intraocular pressure (eiop)-induced glaucoma progression via sponging miR149- 5P. Current Eye Research , 1-9 (2020).

RkJQdWJsaXNoZXIy ODAyMDc0