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		<title>AlphaGenome Atlas: a high-resolution map of human DNA</title>
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		<dc:creator><![CDATA[Ashwani Kumar]]></dc:creator>
		<pubDate>Fri, 09 Oct 2026 10:33:19 +0000</pubDate>
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					<description><![CDATA[<p>AlphaGenome Atlas: a high-resolution map of human DNA AlphaGenome Atlas: a high-resolution map of human DNA AlphaGenome Atlas is the most comprehensive catalogue of how genetic mutations affect molecular biology. The human genome is made of about 3 billion base pairs of DNA — but much of it remains a mystery. Scientists understand the 2%… <span class="read-more"><a href="https://www.taxheal.com/alphagenome-atlas-a-high-resolution-map-of-human-dna.html">Read More &#187;</a></span></p>
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										<content:encoded><![CDATA[<h2 class="uni-article-hero__title font-h1" style="text-align: center;">AlphaGenome Atlas: a high-resolution map of human DNA</h2>
<p><img fetchpriority="high" decoding="async" class="alignnone" src="https://storage.googleapis.com/gweb-uniblog-publish-prod/images/AlphaGenome_Atlas_herosocial.width-1000.format-webp.webp" alt="AlphaGenome Atlas: a high-resolution map of human DNA" width="1000" height="562" /></p>
<p>AlphaGenome Atlas: a high-resolution map of human DNA</p>
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<p class="uni-article-hero__abstract font-body-xl">AlphaGenome Atlas is the most comprehensive catalogue of how genetic mutations affect molecular biology.</p>
<p data-block-key="zhqik">The human genome is made of about 3 billion base pairs of DNA — but much of it remains a mystery. Scientists understand the 2% of the human genome that codes for proteins relatively well, but have only limited knowledge of the remaining 98%. Our AlphaGenome model has already shown how single changes in these non-coding DNA regions can disrupt molecular processes like protein production, but the bigger picture remained unclear.</p>
<p data-block-key="b0kc6">Today, we&#8217;re introducing <a href="http://alphagenome.google/atlas" target="_blank" rel="noopener">AlphaGenome Atlas</a>, a database that predicts the effects of every possible single nucleotide variant in the human genome. We used the AlphaGenome AI model to pre-calculate the regulatory impact of all 9 billion single-letter genetic changes, resulting in a massive, 1-petabyte dataset. Our new Atlas helps scientists rapidly query this vast information.</p>
<p data-block-key="disah">To help researchers rapidly navigate this, the Atlas introduces the AlphaGenome Variant Impact (AVI) score. This single, easy-to-use score combines predictions for both coding and non-coding regions, allowing researchers to quickly prioritize the most promising avenues for research without sifting through thousands of data points.</p>
<h2 data-block-key="agb6p">Empowering researchers to solve biological mysteries</h2>
<p data-block-key="73iho">AlphaGenome Atlas is already acting as a powerful augmentation partner for the scientific community, accelerating research in areas like:</p>
<ul>
<li data-block-key="3lv79"><b>Rare genomic variations:</b> At the Broad Institute, Laura Covill and her team used the AVI score to prioritize variants for unsolved rare disease research. The tool highlighted a critical variant in the DNM1 gene, predicting that it created an incorrect splice site. This provided crucial supporting evidence to successfully solve the case.</li>
<li data-block-key="ag040"><b>Complex traits:</b> Identifying rare, non-coding variants linked to complex traits is difficult due to statistical noise. Dr. Gareth Hawkes applied AlphaGenome Atlas to data from 54,000+ UK Biobank participants. By grouping variants based on predicted molecular effects, he uncovered 22% more non-coding genetic associations. Focusing on the top 1% of impactful variants, he identified 19 genetic regions linked to body mass index (BMI), directing the next stage of targeted research.</li>
</ul>
<h3 data-block-key="7vo20">Opening access to researchers and biologists worldwide</h3>
<p data-block-key="5c72l">AlphaGenome Atlas is available today through an <a href="http://alphagenome.google/atlas" target="_blank" rel="noopener">intuitive website portal</a> that requires zero coding skills, democratizing access for clinical researchers and biologists worldwide. This is part of our ongoing commitment to accelerate genomic discovery and science, for everyone.</p>
<p data-block-key="d391k">AlphaGenome Atlas provides grounded genomic insights that will accelerate the pace of biological discovery.</p>
<p data-block-key="4355p">Read more on the <a href="https://deepmind.google/blog/alphagenome-atlas-a-predictive-map-of-every-possible-dna-letter-change-in-the-human-genome/" target="_blank" rel="noopener">Google DeepMind blog</a>.</p>
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<div class="uni-article-hero__meta-aside"><img decoding="async" class="aligncenter" src="https://i.ytimg.com/vi/p83Zx0sEea0/hqdefault.jpg" alt="AlphaGenome Atlas: a high-resolution map of human DNA" width="480" height="360" /></div>
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<div data-sfc-cp="" data-sfc-root="ep" data-epip="">The <span data-sfc-cp="" data-sfc-root="ep" data-epip="">AlphaGenome Atlas</span> is <mark data-sfc-cp="" data-sfc-root="ep" data-epip="">a massive, <span data-sfc-cp="" data-sfc-root="ep" data-epip="">1-petabyte database</span> launched by <span data-sfc-cp="" data-sfc-root="ep" data-epip="">Google DeepMind</span> on <span data-sfc-cp="" data-sfc-root="ep" data-epip="">September 8, 2026</span></mark>. Powered by the AlphaGenome AI model, it provides precalculated molecular effect predictions for <span data-sfc-cp="" data-sfc-root="ep" data-epip="">all 9 billion possible single-letter changes (single nucleotide variants, or SNVs)</span> across the 3 billion base pairs of the human genome.<span data-sfc-root="ep" data-epip=""> [1, 2, 3] </span></div>
<div data-sfc-cp="" data-sfc-root="ep" data-epip="">Historically, biological research has focused heavily on the 2% of human DNA that codes for functional proteins. The AlphaGenome Atlas comprehensively maps the entire genome, with a specialized focus on the remaining <span data-sfc-cp="" data-sfc-root="ep" data-epip="">98% of non-coding DNA</span>, which dictates gene regulation and has traditionally been exceptionally difficult to analyze.<span data-sfc-root="ep" data-epip=""> [4, 5] </span></div>
<h4 role="heading" data-sfc-root="ep">Key Features &amp; Technology</h4>
<div data-sfc-cp="" data-sfc-root="ep" data-epip="">
<div></div>
<ul>
<li data-sfc-cp="" data-sfc-root="ep" data-epip=""><span data-sfc-cp="" data-sfc-root="ep" data-epip="">Zero-Code Exploration:</span> Designed to be universally accessible, the database is available via a free web portal for academic researchers, allowing biologists to query variants seamlessly without requiring advanced programming skills or massive computational infrastructure.<span data-sfc-root="ep" data-epip=""> [6, 7] </span></li>
<li data-sfc-cp="" data-sfc-root="ep" data-epip=""><span data-sfc-cp="" data-sfc-root="ep" data-epip="">AlphaGenome Variant Impact (AVI) Score:</span> To streamline discovery, the database introduces the <span data-sfc-cp="" data-sfc-root="ep" data-epip="">AVI score</span>, a single metric that combines predictions from AlphaGenome (for regulatory and non-coding impacts) and AlphaMissense (for protein-altering variants) to rapidly rank mutations from low to high impact.<span data-sfc-root="ep" data-epip=""> [3, 8] </span></li>
<li data-sfc-cp="" data-sfc-root="ep" data-epip=""><span data-sfc-cp="" data-sfc-root="ep" data-epip="">Broad Context Architecture:</span> The underlying model evaluates sequence dependencies by analyzing chunks of up to <span data-sfc-cp="" data-sfc-root="ep" data-epip="">1 million base pairs</span> at a time, accounting for long-range interactions such as distant gene-regulating enhancers.<span data-sfc-root="ep" data-epip=""> [2, 9] </span></li>
<li data-sfc-cp="" data-sfc-root="ep" data-epip=""><span data-sfc-cp="" data-sfc-root="ep" data-epip="">De Novo Motif Discovery:</span> The analysis uncovered over <span data-sfc-cp="" data-sfc-root="ep" data-epip="">2,500 recurring sequence motifs</span>, creating a structural directory for transcription factor binding and cell-type-specific gene activity.<span data-sfc-root="ep" data-epip=""> [2, 3] </span></li>
</ul>
</div>
<h4 role="heading" data-sfc-root="ep">Scientific Applications</h4>
<div data-sfc-cp="" data-sfc-root="ep" data-epip="">By doing the computational heavy lifting in advance, the Atlas allows laboratory scientists to skip tedious simulation models and focus directly on experimental validation.<span data-sfc-root="ep" data-epip=""> [5, 9] </span></div>
<div data-sfc-cp="" data-sfc-root="ep" data-epip="">During its early validation phase, researchers successfully applied the Atlas to <span data-sfc-cp="" data-sfc-root="ep" data-epip="">rare disease research</span>. It successfully pinpointed and prioritized a previously unresolved intronic variant linked to the <span data-sfc-cp="" data-sfc-root="ep" data-epip="">DNM1 gene</span> (associated with epileptic encephalopathy), which was subsequently validated in the laboratory. Additionally, in analyzing data from over 54,000 UK Biobank participants, grouping variants by their predicted effects helped uncover <span data-sfc-cp="" data-sfc-root="ep" data-epip="">22% more non-coding genetic associations</span> for complex common traits.<span data-sfc-root="ep" data-epip=""> [7, 10] </span></div>
<div data-sfc-cp="" data-sfc-root="ep" data-epip="">The tool is accessible globally via the Google DeepMind AlphaGenome Portal and its specialized API.<span data-sfc-root="ep" data-epip=""> [7] </span></div>
</div>
<div></div>
<div>
<h4>Read more</h4>
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<p>&nbsp;</p>
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<p><strong>for more refer Gemini website <a href="https://gemini.google.com/" target="_blank" rel="noopener">click here</a></strong></p>
<p><strong>for more refer Artificial Intelligence  website <a href="https://indiaai.gov.in/" target="_blank" rel="noopener">click here</a></strong></p>
<p>&nbsp;</p>
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