The Sei web server on humanbase (https://t.co/UmKdLkLPRt) is now updated to add the capability of computing Sei predictions including sequence class scores for any user-provided sequences or variants (big thanks to @wongak!)
@kathyxchen’s paper for sequence-based global map of regulatory activity is now out (https://t.co/a9Ul7I1rHv)! Congratulations to all co-authors @wongak@OlgaTroyanskaya. Thanks to @anshulkundaje and @nameluem for the News & Views!
Our new preprint (w/ @zhou_jian) is out! 🎉 We developed sequence classes, which allow for easily interpretable yet systematic quantification of the regulatory activities for any sequence & variant, using deep learning-based sequence modeling. (1/13) https://t.co/0xt31Ng9Yu
High-throughput experiments generate large data sets that allow the study of multicellular complexity; #MachineLearning can help analyse, interpret and model these datasets. Read more in the Review by Rachel Sealfon, @wongak & @OlgaTroyanskaya: https://t.co/c1CgEWESRO
High-throughput experiments generate large data sets that allow the study of multicellular complexity; #MachineLearning can help analyse, interpret and model these datasets. Read more in the Review by Rachel Sealfon, @wongak & @OlgaTroyanskaya: https://t.co/c1CgEWESRO
Combing through millions of possible protein combinations to assemble a catalog that could be used to precisely target only cancer cells while leaving normal ones alone. Kudos to @limlab@UCSF@OlgaTroyanskaya@TroyanskayaLab https://t.co/z7weJPLOgB
Check out https://t.co/jmUIZaG7Qd - from tissue-specific networks to mutational regulatory impact to disease gene prediction. Project lead by the amazing @wongak Nicely described in https://t.co/6YfFb54RHH @SimonsFdn@FlatironInst @FlatironCCB
Hi genomics community! I recently started my own group at UTSW. We are looking for postdoc and students interested in machine learning and genomics to join us in our adventures in new frontiers! Please RT or forward to any potential interested candidates https://t.co/OeaYVHvuQf
ExPecto predicts tissue-specific expression and variant effect ab initio from sequence, prioritizes all GWAS variants, generates in silico mutagenesis of all TSS proximal regions, and provides a link to evolutionary constraints on gene expression. https://t.co/5YDmFAk9sV
Proud of our discovery of noncoding regulatory signal in autism. Independently confirmed in discovery and replication cohorts for both DNA and RNA regulation. #deeplearning#WGS#autism#ASD https://t.co/UQvXYMktsR
Great talk from @OlgaTroyanskaya on predicting effects of mutations with DeepSEA and now being able to predict tissue specific gene expression with new ExPecto approach. Valuable for GWAS causal variant prioritization and de novo calling of disease variants #T2G18