Molecular Design & DNA Nanotechnology Lead

Astera

$120K — $150K *
Pharmaceuticals & Biotech
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • PhD in structural DNA nanotechnology, biophysics, bioengineering, chemistry, or a related field.
  • Experience in DNA-origami design and folding processes.
  • Proficient in DNA-nanostructure design tools and coarse-grained molecular-dynamics simulation software.
  • Hands-on experience in wet-lab techniques including folding and quality control.
  • Proven track record of developing nanoscale structures into functional devices.

Responsibilities

  • Design DNA-origami actuator mechanisms for nanometer-scale motion.
  • Utilize molecular-dynamics simulations to predict mechanical behavior and iterate designs.
  • Optimize DNA origami folding in wet lab environments.
  • Ensure quality control and prepare structures for advanced characterization techniques.
  • Lead an interdisciplinary team and collaborate with device-physics and computational experts.

Benefits

  • Collaborative work environment with a focus on interdisciplinary innovation.
  • Opportunities for travel for collaborative projects.
  • Engagement in cutting-edge research with real-world applications.
Full Job Description
Position Summary

The Astera Institute is seeking a Molecular Design & DNA Nanotechnology Lead to lead the design and wet-lab fabrication of a DNA-origami electrostatic actuator - a charged origami plate/polymer/electrode stack that, driven by an applied field, produces controlled nanometer-scale motion through a force-transmitting linkage. This position reports to Dr. Jeremy Barton (Astera Institute Resident, Project Lead). This is a full-time position.

Responsibilities
  • Design the DNA-origami actuator mechanism - the charged drive plate, the force-transmitting structure, and the amplifying lever or four-bar linkage - that turns a small electrostatic deflection of the plate into a larger, controlled output displacement within a sub-200-nanometer footprint.
  • Use coarse-grained molecular-dynamics simulation (e.g., oxDNA) to predict the mechanism's mechanical behavior - stiffness, compliance, and thermal stability of its motion - and iterate the design.
  • Fold and optimize the DNA origami in the wet lab (annealing, buffer, and magnesium conditions), and design the site-specific chemistry that anchors the plate and mechanism to the device surface.
  • Own folding yield and quality control, and prepare structures for characterization by atomic-force microscopy (AFM), cryo-electron microscopy, and single-molecule fluorescence.
  • Lead a small, interdisciplinary founding team and collaborate closely with device-physics, controls, and computational colleagues.


Qualifications and Experience
  • PhD in structural DNA nanotechnology, biophysics, bioengineering, chemistry, or a related field, with demonstrated DNA-origami design and folding experience.
  • Proficiency with DNA-nanostructure design tools and coarse-grained molecular-dynamics simulation (e.g., caDNAno, oxDNA).
  • Hands-on wet-lab command of folding, gel and AFM quality control, and purification.
  • A track record of taking nanoscale structures from design through to characterized, functional devices.
  • Ability to lead a small interdisciplinary team and communicate across disciplines.


Location

This position is on site at our office in Emeryville, CA. Some travel may be required from time-to-time for in-person collaboration and work.

Compensation

The posted salary range is based on location in the Bay Area. The successful candidate will receive a competitive compensation package, commensurate with their experience and location.
  • See the Benefits Summary.

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