Atanu Paul
Senior Scientist
About
Senior scientist with over 6 years of preclinical drug discovery experience in the pharmaceutical and biotech industry. Demonstrated proficiency in assay development, and in vitro pharmacology activities by functional and phenotypic screenings to elucidate mechanisms of action and enable hit characterization. Developed and implemented research plans to validate new targets and propelled discovery programs forward. Collaborative approach in closely working with cross-functional teams to enable target validation and drug candidate progression. Effective in analyzing and presenting comprehensive data packages in team meetings within a multidisciplinary environment. Proven ability to mentor junior peers and manage external CROs, facilitating project success. Strong emphasis on scientific excellence, creative resourcefulness, critical thinking, and proven achievement in peer-reviewed publications and research and preclinical program development.
United States
Greater Boston
Biotechnology
Surface Biotinyation, Membrane Protein Biology, Induced-Proximity, CRISPR-Cas9-based gene editing, High Throughput Screening, Primary Cell Culture, Method Development, Oncology, Teamwork, Molecular & Cellular Biology, Critical Thinking, Collaboration, CRISPR-based screening, Molecular & Cell Biology, In Vitro Ubiquitination Assay, CRISPR-Cas9 Tchnology, RNAi, RT-PCR, qPCR, Cell-based reporter assays, Cell Proliferation Assay
Experience

Senior Scientist
Flagship Pioneering FL107
Cambridge, MA
- Founding scientific team member playing a foundational role in establishing laboratory infrastructure, assay platforms, and experimental workflows from the ground up in a stealth-mode early-stage biotech startup. - Design and execute experiments focused on the identification and validation of novel targeted protein degradation pathway, carrying out mechanistic studies using cell-based functional assays and genetic engineering approaches. - Develop and optimize in vitro assays to evaluate protein degradability across cellular compartments. - Developed and optimized cell surface biotinylation and streptavidin-based enrichment workflows for the identification and characterization of novel membrane proteins. - Advance disease-relevant model systems to support early-stage discovery programs. - Collaborate cross-functionally to achieve key milestones, contributing to successful Series A funding. - Manage CRO partnerships and ensure high-quality data generation, analysis, and reporting.

Gene Therapy process Development Scientist
Boston, MA
- Developed in-house potency assays in the Analytical team to support routine assessment and quality control of AAV-based gene therapy products. - Supported assay development, transfer, and qualification/validation activities for AAV-based gene therapy candidates. - Collaborated with upstream, downstream, and pilot groups to build strategies for AAV candidates and next-generation viral vector models.

Scientist, Scientist II, Senior Scientist
Watertown, MA
- Led biology strategy for CDK2 heterobifunctional degrader and IRAKIMiD (KT-413) programs, as well as exploratory initiatives, driving the design and execution of cellular and biochemical assays to elucidate mechanisms of action of PROTACs and molecular glues. - Built and deployed high-throughput cell-based screening platforms to enable hit identification and lead optimization across internal and CRO workflows. - Engineered CRISPR/RNAi-modified cell models to enable target validation, selectivity profiling, and biomarker discovery, supporting biomarker-driven patient stratification. - Worked extensively with the proteomics team to prepare and optimize samples for mass spectrometry-based proteomic analysis of lead molecules, ensuring sample quality, enrichment efficiency, and reproducibility to identify potential “off-targets” and downstream biomarkers. - Directed mechanism-of-action studies for KT-413 (IRAKIMiD), establishing superior efficacy through dual targeting of IRAK4 and IMiD substrates relative to IMiD-based molecular glues. - Collaborated strategically with proteomics, bioinformatics, and in vivo pharmacology teams to drive program objectives and support data-driven decision-making. - Owned CRO partnerships and in-house assay execution, ensuring delivery of high-quality data and driving cross-functional alignment to achieve key milestones and inform go/no-go decisions.

Postdoctoral Scholar - Chemical Biology & Therapeutics (CBT)
Cambridge, MA
- Advanced early discovery biology programs to identify and validate novel regulators of cancer cell signaling pathways. - Identified KIRREL1 via genome-wide CRISPR screening as a key modulator of the Hippo–YAP pathway (Paul et al, Nature Communications, 2022). - Led mechanistic studies integrating biochemical and cell-based assays to define KIRREL1’s role in Hippo pathway activation at cell–cell contact sites. - Executed and optimized genome-wide CRISPR screens to uncover signaling cross-talk (e.g., TGFβ–Wnt), delivering high-quality data with rigorous documentation and timely project completion.

Graduate Research Assistant
Houston, TX
Dissertation Title: Phosphorylation And Ubiquitin Modification At DNA Damage Sites In Response To Double-Strand Breaks - Elucidated the role of Abraxas (BRCA1-A complex) in maintaining genome stability and tumor suppression (Cell Reports, 2014). - Defined the mechanism by which DNA damage–induced phosphorylation of Abraxas regulates BRCA1 dimerization and recruitment to DNA damage sites (Molecular Cell, 2016). - Discovered a novel Lys11-linked histone ubiquitination as an epigenetic mechanism driving transcriptional silencing at sites of DNA damage (Molecular Cell, 2017). - Characterized SUMOylation- and ubiquitination-dependent recruitment of the BRCA1-A complex to DNA double-strand breaks (JBC, 2012).

Graduate Research/Teaching Assistant
El Paso
Thesis Title: A specific regulatory role for SGTα on the maturation and activation of steroid hormone receptors Characterized a newly identified Hsp90-Hsp70-associated cochaperone SGTA in regulating specific steroid hormone receptor complex and identified SGTA’s role in inhibiting FKBP52-mediated potentiation of receptor activity (JBC 2014).
Atanu Paul's Contact Information
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