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Hemanth Tummala

@tummalalab.bsky.social
16 followers 8 following 2 posts

Patho Genetic mechanisms of inherited bone marrow failure syndromes and cancer @TBDlabs

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Reposted by Hemanth Tummala
Vijay G. Sankaran @bloodgenes.bsky.social · 02/01/2026
Delighted to have our work on 🧬 resilience to 🩸cancer led by @g-agarwal.bsky.social & amazing collaborators, including @kharaslab.bsky.social, published in @science.org: www.science.org/doi/10.1126/... 🧵
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Reposted by Hemanth Tummala
Vijay G. Sankaran @bloodgenes.bsky.social · 04/06/2025
Delighted to have our work on Polygenic Modifiers of #TelomereBiologyDisorders, led by Michael Poeschla, @sashagusevposts.bsky.social, @mitchiela.bsky.social, @sharonsavage.bsky.social, @tummalalab.bsky.social, + co, published in @jclinical-invest.bsky.social today: www.jci.org/articles/vie...
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Hemanth Tummala @tummalalab.bsky.social · 04/06/2025
An excellent collaboration between @bloodgenes.bsky.social @telomeredoc.bsky.social & our lab reveal how common genetic variants shape disease outcomes in rare telomere biology disorders. A powerful step toward unravelling phenotypic variability in monogenic disease. @dcaction.bsky.social
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Hemanth Tummala @tummalalab.bsky.social · 31/03/2025
More insights on nucleotide metabolism pathway in regulation of telomere length. Fabulous work by William Mannherz from Suneet Agarwal's lab www.nature.com/articles/s41...
nature.com
Metabolic constraint of human telomere length by nucleotide salvage efficiency - Nature Communications
Telomere length is tightly controlled in normal cellular function and the human population. Here, the authors reveal that telomere synthesis is bidirectionally constrained by cellular nucleotide pools...
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Reposted by Hemanth Tummala
Rakyan Lab @rakyanlab.bsky.social · 21/12/2024
London SE17.
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