Senior/Principal Scientist, Synthetic Biology

Fieldstone Bio

$110K — $130K *
Pharmaceuticals & Biotech
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • Ph.D. in Bioengineering, Chemical Engineering, Microbiology, or related field with 2+ years industry experience.
  • Proven track record of developing microbial sensors, ideally for applications outside lab settings.
  • Expertise in DNA design and assembly of complex plasmids.
  • Familiarity with transcriptomics and bioinformatics in microbial biosensor development.
  • Experience with non-model microbes and their engineering is advantageous.
  • Strong analytical, problem-solving, and independent work capabilities.
  • Excellent communication skills, both verbal and written.

Responsibilities

  • Design, build, and test microbial biosensors targeting specific molecules.
  • Develop novel biosensors for unregulated target molecules using advanced sequencing techniques.
  • Enhance existing biosensors through protein engineering and directed evolution.
  • Collaborate with the Microbiology team for effective biosensor deployment.
  • Engage with leadership to refine program technical strategies.
  • Ensure timely progress towards project milestones.
  • Present scientific findings in project team meetings and documentation.

Benefits

  • Opportunity to significantly impact R&D strategies in a growing biotech company.
  • Collaborative work environment with leading experts in synthetic biology and AI.
  • Access to cutting-edge technologies and approaches in the field.
  • Exposure to various biosensor applications across different environments.
  • On-site position that fosters collaboration and hands-on research.
Full Job Description
Position summary

Fieldstone Bio is looking for a highly motivated Senior Scientist or Principal Scientist to join our growing Synthetic Biology team, where they will work to design, build, and test microbial biosensors for function in lab-, soil-, water-, and rock-based environments. Target molecules for these biosensors will include metals (for mining applications) and small molecules relevant to Fieldstone's ongoing and future programs. This role will drive development of biosensors for small molecules with no known regulators, requiring expertise in transcriptomics-based approaches and/or experience in protein engineering and directed evolution. A successful candidate will independently contribute to sensor design, construction, and testing, leveraging synthetic biology expertise to identify the genetic parts and microbial chassis most suited for the program. This is a lab-based role that will work collaboratively with the company's Microbiology team and AI Data team. This role provides a unique opportunity to impact the development of research and development strategies at an early-stage biotechnology company. This role is on-site and located in Woburn, MA.
Key Responsibilities:
  • Design, build, and test microbial biosensors for target molecules of interest
  • Develop biosensors for target molecules with no known regulators using RNA-sequencing and genome-mining approaches
  • Improve existing biosensors via protein engineering, directed evolution, and screening-based approaches
  • Collaborate with Microbiology team to identify synthetic biology solutions to support successful biosensor deployment in the target environment
  • Interface with leadership team to refine select program's technical strategies
  • Ensure timely delivery of goals for set milestones
  • Clearly present scientific findings in cross-functional project team meetings
  • Document processes, SOPs, and results in an Electronic Lab Notebook (ELN) system
Qualifications:
  • Ph.D. (or equivalent) in Bioengineering, Chemical Engineering, Microbiology (or related field) and a minimum of 2+ years of industry experience
  • Demonstrated success in microbial engineering with a proven track record of sensor development, preferably with experience engineering microbes for function outside of a lab environment
  • Expertise in DNA design and assembly of complex plasmids
  • Depth of knowledge of current technologies used for identifying and screening novel microbial biosensors, including transcriptomics- and bioinformatics-based approaches
  • Experience with engineering non-model microbes and engineering microbes for function in complex non-lab environments is a plus
  • Strong analytical and problem-solving skills and outside-of-the-box thinking
  • Ability to work independently and manage multiple tasks simultaneously
  • Excellent verbal and written communication
  • Versatile and flexible scientist who thrives in a fast-paced and collaborative lab environment


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