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      Childhood amyotrophic lateral sclerosis caused by excess sphingolipid synthesis

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      Nature Medicine
      Springer Science and Business Media LLC

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          Is Open Access

          The mutational constraint spectrum quantified from variation in 141,456 humans

          Genetic variants that inactivate protein-coding genes are a powerful source of information about the phenotypic consequences of gene disruption: genes that are crucial for the function of an organism will be depleted of such variants in natural populations, whereas non-essential genes will tolerate their accumulation. However, predicted loss-of-function variants are enriched for annotation errors, and tend to be found at extremely low frequencies, so their analysis requires careful variant annotation and very large sample sizes 1 . Here we describe the aggregation of 125,748 exomes and 15,708 genomes from human sequencing studies into the Genome Aggregation Database (gnomAD). We identify 443,769 high-confidence predicted loss-of-function variants in this cohort after filtering for artefacts caused by sequencing and annotation errors. Using an improved model of human mutation rates, we classify human protein-coding genes along a spectrum that represents tolerance to inactivation, validate this classification using data from model organisms and engineered human cells, and show that it can be used to improve the power of gene discovery for both common and rare diseases.
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            El Escorial revisited: Revised criteria for the diagnosis of amyotrophic lateral sclerosis

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              Amyotrophic Lateral Sclerosis

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                Journal
                Nature Medicine
                Nat Med
                Springer Science and Business Media LLC
                1078-8956
                1546-170X
                May 31 2021
                Article
                10.1038/s41591-021-01346-1
                34059824
                b1e801d8-cd79-421d-aceb-b032c954ae7b
                © 2021

                https://www.springer.com/tdm

                https://www.springer.com/tdm

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