Branislav (djuric42)

djuric42

Geek Repo

Location:Oslo

Github PK Tool:Github PK Tool

Branislav's starred repositories

linux

Linux kernel source tree

Language:CLicense:NOASSERTIONStargazers:175381Issues:7959Issues:0

tauri

Build smaller, faster, and more secure desktop applications with a web frontend.

Language:RustLicense:Apache-2.0Stargazers:80182Issues:501Issues:4204

AI-Expert-Roadmap

Roadmap to becoming an Artificial Intelligence Expert in 2022

Language:JavaScriptLicense:MITStargazers:28807Issues:961Issues:63

emscripten

Emscripten: An LLVM-to-WebAssembly Compiler

Language:C++License:NOASSERTIONStargazers:25438Issues:589Issues:9144

tinygrad

You like pytorch? You like micrograd? You love tinygrad! ❤️

Language:PythonLicense:MITStargazers:25398Issues:268Issues:677

fish-shell

The user-friendly command line shell.

Language:RustLicense:NOASSERTIONStargazers:25203Issues:284Issues:7113

personal-security-checklist

🔒 A compiled checklist of 300+ tips for protecting digital security and privacy in 2024

Language:TypeScriptLicense:NOASSERTIONStargazers:16421Issues:213Issues:80

FLEX

An in-app debugging and exploration tool for iOS

Language:Objective-CLicense:NOASSERTIONStargazers:13959Issues:386Issues:391

watchman

Watches files and records, or triggers actions, when they change.

DALLE2-pytorch

Implementation of DALL-E 2, OpenAI's updated text-to-image synthesis neural network, in Pytorch

Language:PythonLicense:MITStargazers:10981Issues:121Issues:208

kratos

Next-gen identity server replacing your Auth0, Okta, Firebase with hardened security and PassKeys, SMS, OIDC, Social Sign In, MFA, FIDO, TOTP and OTP, WebAuthn, passwordless and much more. Golang, headless, API-first. Available as a worry-free SaaS with the fairest pricing on the market!

Language:GoLicense:Apache-2.0Stargazers:10906Issues:114Issues:1291

WebKit

Home of the WebKit project, the browser engine used by Safari, Mail, App Store and many other applications on macOS, iOS and Linux.

Language:C++Stargazers:7686Issues:122Issues:0

isomorphic-git

A pure JavaScript implementation of git for node and browsers!

Language:JavaScriptLicense:MITStargazers:7379Issues:66Issues:648

watchexec

Executes commands in response to file modifications

Language:RustLicense:Apache-2.0Stargazers:5100Issues:26Issues:314

dot

The Deepfake Offensive Toolkit

Language:PythonLicense:BSD-3-ClauseStargazers:4022Issues:43Issues:89

Assemblies-of-putative-SARS-CoV2-spike-encoding-mRNA-sequences-for-vaccines-BNT-162b2-and-mRNA-1273

RNA vaccines have become a key tool in moving forward through the challenges raised both in the current pandemic and in numerous other public health and medical challenges. With the rollout of vaccines for COVID-19, these synthetic mRNAs have become broadly distributed RNA species in numerous human populations. Despite their ubiquity, sequences are not always available for such RNAs. Standard methods facilitate such sequencing. In this note, we provide experimental sequence information for the RNA components of the initial Moderna (https://pubmed.ncbi.nlm.nih.gov/32756549/) and Pfizer/BioNTech (https://pubmed.ncbi.nlm.nih.gov/33301246/) COVID-19 vaccines, allowing a working assembly of the former and a confirmation of previously reported sequence information for the latter RNA. Sharing of sequence information for broadly used therapeutics has the benefit of allowing any researchers or clinicians using sequencing approaches to rapidly identify such sequences as therapeutic-derived rather than host or infectious in origin. For this work, RNAs were obtained as discards from the small portions of vaccine doses that remained in vials after immunization; such portions would have been required to be otherwise discarded and were analyzed under FDA authorization for research use. To obtain the small amounts of RNA needed for characterization, vaccine remnants were phenol-chloroform extracted using TRIzol Reagent (Invitrogen), with intactness assessed by Agilent 2100 Bioanalyzer before and after extraction. Although our analysis mainly focused on RNAs obtained as soon as possible following discard, we also analyzed samples which had been refrigerated (~4 ℃) for up to 42 days with and without the addition of EDTA. Interestingly a substantial fraction of the RNA remained intact in these preparations. We note that the formulation of the vaccines includes numerous key chemical components which are quite possibly unstable under these conditions-- so these data certainly do not suggest that the vaccine as a biological agent is stable. But it is of interest that chemical stability of RNA itself is not sufficient to preclude eventual development of vaccines with a much less involved cold-chain storage and transportation. For further analysis, the initial RNAs were fragmented by heating to 94℃, primed with a random hexamer-tailed adaptor, amplified through a template-switch protocol (Takara SMARTerer Stranded RNA-seq kit), and sequenced using a MiSeq instrument (Illumina) with paired end 78-per end sequencing. As a reference material in specific assays, we included RNA of known concentration and sequence (from bacteriophage MS2). From these data, we obtained partial information on strandedness and a set of segments that could be used for assembly. This was particularly useful for the Moderna vaccine, for which the original vaccine RNA sequence was not available at the time our study was carried out. Contigs encoding full-length spikes were assembled from the Moderna and Pfizer datasets. The Pfizer/BioNTech data [Figure 1] verified the reported sequence for that vaccine (https://berthub.eu/articles/posts/reverse-engineering-source-code-of-the-biontech-pfizer-vaccine/), while the Moderna sequence [Figure 2] could not be checked against a published reference. RNA preparations lacking dsRNA are desirable in generating vaccine formulations as these will minimize an otherwise dramatic biological (and nonspecific) response that vertebrates have to double stranded character in RNA (https://www.nature.com/articles/nrd.2017.243). In the sequence data that we analyzed, we found that the vast majority of reads were from the expected sense strand. In addition, the minority of antisense reads appeared different from sense reads in lacking the characteristic extensions expected from the template switching protocol. Examining only the reads with an evident template switch (as an indicator for strand-of-origin), we observed that both vaccines overwhelmingly yielded sense reads (>99.99%). Independent sequencing assays and other experimental measurements are ongoing and will be needed to determine whether this template-switched sense read fraction in the SmarterSeq protocol indeed represents the actual dsRNA content in the original material. This work provides an initial assessment of two RNAs that are now a part of the human ecosystem and that are likely to appear in numerous other high throughput RNA-seq studies in which a fraction of the individuals may have previously been vaccinated. ProtoAcknowledgements: Thanks to our colleagues for help and suggestions (Nimit Jain, Emily Greenwald, Lamia Wahba, William Wang, Amisha Kumar, Sameer Sundrani, David Lipman, Bijoyita Roy). Figure 1: Spike-encoding contig assembled from BioNTech/Pfizer BNT-162b2 vaccine. Although the full coding region is included, the nature of the methodology used for sequencing and assembly is such that the assembled contig could lack some sequence from the ends of the RNA. Within the assembled sequence, this hypothetical sequence shows a perfect match to the corresponding sequence from documents available online derived from manufacturer communications with the World Health Organization [as reported by https://berthub.eu/articles/posts/reverse-engineering-source-code-of-the-biontech-pfizer-vaccine/]. The 5’ end for the assembly matches the start site noted in these documents, while the read-based assembly lacks an interrupted polyA tail (A30(GCATATGACT)A70) that is expected to be present in the mRNA.

sqlite-web

Web-based SQLite database browser written in Python

Language:PythonLicense:MITStargazers:3261Issues:76Issues:131

prompt

a beautiful command-line prompt for node.js

Language:JavaScriptLicense:MITStargazers:1893Issues:28Issues:142

openethereum

(deprecated) The fast, light, and robust client for the Ethereum mainnet.

Language:RustLicense:GPL-3.0Stargazers:1642Issues:48Issues:354

permission.site

A site to test the interaction of web APIs and browser permissions.

Language:JavaScriptLicense:BSD-3-ClauseStargazers:1172Issues:38Issues:45

cordova-plugin-inappbrowser

Apache Cordova InAppBrowser Plugin

Language:JavaLicense:Apache-2.0Stargazers:1114Issues:95Issues:571

Cookbook

Canonical Examples for Using the AudioKit Framework

Language:SwiftLicense:MITStargazers:612Issues:35Issues:66

dna-3d-engine

3d engine implementation in DNA code!

LJSON

JSON extended with pure functions.

Language:JavaScriptLicense:MITStargazers:502Issues:20Issues:13

projectaria_tools

projectaria_tools is an C++/Python open-source toolkit to interact with Project Aria data

Language:C++License:Apache-2.0Stargazers:413Issues:42Issues:79

swift-llbuild2

A fresh take on a low-level build system API.

Language:SwiftLicense:Apache-2.0Stargazers:280Issues:117Issues:0

PocketPCR

Pocket size USB powered PCR Thermo Cycler

Language:C++License:GPL-3.0Stargazers:141Issues:12Issues:13

stpihkal

Repo deprecated, STPIHKAL moved to docs.buttplug.io repo

storage-foundation-api-explainer

Explainer showcasing a new web storage API, NativeIO

cordova-android-builder

Build Cordova Application for Android using Docker

Language:DockerfileLicense:MITStargazers:20Issues:0Issues:0