Jobs and Careers
AR

Machine Learning Research Lead, ADI, Computational Tech Center

Arc Institute
Palo Alto, United Statesfull_timeVerifiedPosted 13 Jun 2025
💰 $340,000/yr($276,000/yr$340,000/yr)

About the role

About Arc Institute

The Arc Institute is a new scientific institution that conducts curiosity-driven basic science and technology development to understand and treat complex human diseases. Headquartered in Palo Alto, California, Arc is an independent research organization founded on the belief that many important research programs will be enabled by new institutional models. Arc operates in partnership with Stanford University, UCSF, and UC Berkeley.

While the prevailing university research model has yielded many tremendous successes, we believe in the importance of institutional experimentation as a way to make progress. These include:

  • Funding: Arc will fully fund Core Investigators’ (PIs’) research groups, liberating scientists from the typical constraints of project-based external grants.
  • Technology: Biomedical research has become increasingly dependent on complex tooling. Arc Technology Centers develop, optimize and deploy rapidly advancing experimental and computational technologies in collaboration with Core Investigators. 
  • Support: Arc aims to provide first-class support—operationally, financially and scientifically—that will enable scientists to pursue long-term high risk, high reward research that can meaningfully advance progress in disease cures, including neurodegeneration, cancer, and immune dysfunction.
  • Culture: We believe that culture matters enormously in science and that excellence is difficult to sustain. We aim to create a culture that is focused on scientific curiosity, a deep commitment to truth, broad ambition, and selfless collaboration.

Arc has scaled to nearly 200 people. With $650M+ in committed funding and a state of the art new lab facility in Palo Alto, Arc will continue to grow quickly in the coming years.

About the Position

We are searching for an exceptional scientific leader to establish a new team within Arc Institute’s Computational Technology Center, serving as Machine Learning Research Lead, for our Alzheimer's Disease Initiative (ADI). 

This ambitious initiative spans Arc's Technology Centers and Core Investigator Laboratories and focuses on high-throughput interrogation of neurodegeneration and Alzheimer's disease mechanisms using advanced gene editing and functional genomics approaches. As the Machine Learning Research Lead, ADI, you will spearhead development of sophisticated machine learning foundation models to capture cell states and infer gene regulatory networks and causal relationships to predict therapeutic interventions.

This position offers the rare opportunity to build and lead a world-class team while making direct contributions to understanding and potentially treating Alzheimer's disease through state-of-the-art computational biology and machine learning approaches.

About You

  • You are passionate about machine learning and computational biology, with expertise in applying cutting edge ML approaches to biological systems
  • You excel at developing interpretable machine learning approaches, such as variational inference and causal modeling methods
  • You are excited about building and leading a technical team while remaining hands-on with foundation model development and implementation. 
  • You thrive in collaborative, multidisciplinary environments and enjoy working with both computational scientists and wet lab biologists
  • You are a continuous learner who stays current with the latest developments, in both machine learning and neuroscience

In This Position, You Will

  • Attract, build and lead a team of exceptional machine learning research scientists dedicated to developing foundation models for cellular systems in Alzheimer's disease
  • Develop and execute on a roadmap of interpretable machine learning approaches to understand disease mechanisms, with emphasis on variational inference, causal modeling, as well as modern transformer- and diffusion-based architectures
  • Work closely with experimentalists on brain organoid/spheroid cellular models as well as in vivo models, working with scRNA-seq, Perturb-seq and other datasets to unravel causal gene pathways relevant to Alzheimer’s disease
  • Develop predictive modeling approaches to identify how perturbations can move cell states from high risk Alzheimer’s profiles back to healthy / low risk states
  • Collaborate closely with experimental biologists to ensure ML models are grounded in disease biology and can feedback into future experimental strategies
  • Foster collaborations with external partners in the computational biology and neuroscience communities
  • Publish high

Apply for this role

Generate a tailored application kit with a matched cover letter, interview prep, and CV highlights — in under 60 seconds.

Apply Now →Generate Application Kit

Free account required — sign up in 30s

Company

Arc Institute

View company profile →