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Protein Design Jobs in Oregon (NOW HIRING)

... protein purification strategies, and interpreting gel electrophoresis results. Emphasizes molecular-level reasoning and connects biochemistry to drug design, clinical diagnostics, and genetic disease ...

Biochemistry Tutor

OR · Remote

$40/hr

... protein purification strategies, and interpreting gel electrophoresis results. Emphasizes molecular-level reasoning and connects biochemistry to drug design, clinical diagnostics, and genetic disease ...

... protein purification strategies, and interpreting gel electrophoresis results. Emphasizes molecular-level reasoning and connects biochemistry to drug design, clinical diagnostics, and genetic disease ...

... protein and dairy-free cheese products. Reporting to the VP of R&D, this role owns projects from ... Design and execute product quality and stability experiments; analyze and interpret data to make ...

... protein and dairy-free cheese products. Reporting to the VP of R&D, this role owns projects from ... Design and execute product quality and stability experiments; analyze and interpret data to make ...

AP Biology Tutor

OR · Remote

$40/hr

Skilled at breaking down complex biological processes including DNA replication, protein synthesis, and signal transduction pathways. Guides students through experimental design, data analysis using ...

Skilled at breaking down complex biological processes including DNA replication, protein synthesis, and signal transduction pathways. Guides students through experimental design, data analysis using ...

Skilled at breaking down complex biological processes including DNA replication, protein synthesis, and signal transduction pathways. Guides students through experimental design, data analysis using ...

ABOUT FLOVISION FloVision is a remote-first startup focused on improving the food supply chain, starting with protein processing. We design computer vision and machine learning-assisted production ...

Showing results 21-40

Protein Design information

What is protein design?

Protein design is the process of creating new proteins or modifying existing ones to have specific functions or properties. This can involve using computational tools, laboratory techniques, or a combination of both to predict and engineer amino acid sequences that will fold into desired three-dimensional structures. Protein design is used in various fields, including medicine, biotechnology, and research, to develop novel enzymes, therapeutics, or materials. The field requires a strong understanding of biology, chemistry, and computer science to achieve successful outcomes.

What are the key skills and qualifications needed to thrive as a protein design scientist, and why are they important?

To thrive as a Protein Design Scientist, you need a strong background in molecular biology, biochemistry, and computational modeling, typically supported by an advanced degree in a relevant field. Proficiency with tools such as Rosetta, PyMOL, and molecular dynamics simulation software, as well as experience with protein expression and purification techniques, is essential. Analytical thinking, problem-solving, and effective communication are important soft skills to drive innovation and collaborate with interdisciplinary teams. These skills are crucial for designing functional proteins, troubleshooting experiments, and advancing research goals in biotechnology and pharmaceutical development.

What are some typical challenges faced by professionals in protein design, and how are they addressed within a team setting?

Professionals in protein design often encounter challenges such as predicting accurate protein folding, ensuring stability, and achieving desired biological activity. These complexities are typically addressed through close collaboration with computational biologists, structural biologists, and experimental scientists. Teams frequently hold cross-functional meetings to troubleshoot issues, share findings, and iterate on design strategies based on laboratory results. This collaborative environment helps leverage diverse expertise and accelerates the development of novel proteins with desired functions.

What is the difference between Protein Design vs Protein Engineering?

AspectProtein DesignProtein Engineering
Required CredentialsBiochemistry, Molecular Biology, BioinformaticsBiochemistry, Molecular Biology, Bioinformatics
Work EnvironmentResearch labs, biotech companies, academiaResearch labs, biotech companies, academia
Industry UsageDesigning novel proteins, drug development, synthetic biologyModifying existing proteins for improved function or stability

Protein Design focuses on creating new proteins with specific functions, often using computational methods. Protein Engineering involves modifying existing proteins to enhance or alter their properties. Both roles require similar skills and are used in research, biotech, and pharmaceutical industries, but their goals differ: one designs from scratch, the other optimizes existing proteins.

What job categories do people searching Protein Design jobs in Oregon look for?

The top searched job categories for Protein Design jobs in Oregon are:

What cities in Oregon are hiring for Protein Design jobs?

Cities in Oregon with the most Protein Design job openings:

Infographic showing various Protein Design job openings in Oregon as of August 2026, with employment types broken down into 85% Full Time, 12% Part Time, and 3% Contract. Highlights an 82% Physical, 5% Hybrid, and 13% Remote job distribution.

Postdoctoral Scholar

Portland, OR • On-site

Oregon Health & Science University
Colleges, Universities, and Professional Schools • 10K+ employees

$69K/yr

Full-time

Re-posted 24 days ago


Oregon Health & Science University rating

8.1

Company rating: 8.1 out of 10

Based on 95 frontline employees who took The Breakroom Quiz


Job description

Function/Duties of Position
A fully funded postdoctoral position is available in the Department of Pediatrics. The laboratory studies the molecular mechanisms that drive oncogenic receptor tyrosine kinase (RTK) signaling and therapeutic resistance in cancer, with an emphasis on kinase-driven solid tumors, including lung cancer and glioblastoma.
The position supports an NIH R01 program that defines how an oncogenic RTK is activated, stabilized, and transcriptionally controlled, and how these processes shape response and resistance to targeted kinase inhibitors. The postdoctoral scholar will investigate kinase signaling specificity and RTK crosstalk, characterize a phospho-degron that couples receptor activity to protein turnover, and determine the cis- and trans-regulatory basis of aberrant receptor expression. The work integrates molecular, biochemical, cell biological, genome-engineering, and functional-genomic approaches in engineered and patient-derived cancer models.
The successful candidate will lead a defined project within this program, contribute to collaborative studies across OHSU, and prepare findings for publication and grant applications.
Required Qualifications
  • PhD or equivalent doctoral degree, awarded or expected before the start date.
  • 0 to 5 years of postdoctoral experience.
  • Demonstrated, hands-on proficiency in mammalian cell culture, including sterile technique and long-term maintenance of established and patient-derived cancer cell lines.
  • Demonstrated proficiency across core molecular biology and biochemistry, including molecular cloning and site-directed mutagenesis, stable-line generation (retroviral, lentiviral, or Sleeping Beauty transposon systems), CRISPR/Cas9 genome editing, quantitative immunoblotting, and immunoprecipitation.
  • Ability to independently design, execute, troubleshoot, and interpret well-controlled experiments, and to analyze and integrate multi-modal datasets with appropriate statistical treatment, with meticulous record-keeping and attention to rigor.
  • Evidence of scientific productivity and follow-through, demonstrated by at least one first-author or co-first-author peer-reviewed publication or preprint.
  • Resourcefulness, creativity, and independent problem-solving, including the ability to diagnose failed experiments, locate solutions, and adapt approaches independently.

Preferred Qualifications
  • Prior research in cell signaling, biochemistry, cancer biology, or a related mechanistic discipline.
  • Advanced genome engineering beyond standard knockout, such as HDR-based knock-in and CRISPR interference, activation, or tiling screens.
  • Protein-homeostasis methods, including cycloheximide-chase stability and ubiquitination assays, and protein interaction methods such as co-immunoprecipitation, PLA, or proximity labeling (for example, TurboID).
  • Transformation and drug-response assays, including Ba/F3, soft-agar, spheroid or three-dimensional culture, and tyrosine kinase inhibitor dose-response.
  • Ability to interpret and, where relevant, perform and critically evaluate analysis of multi-modal datasets, including proteomic and mass-spectrometry data (phospho-proteomic and affinity- or proximity-based approaches) and genomic or epigenomic data (ATAC-seq, RNA-seq), with familiarity with pathway and enrichment methods, and preparation of publication-quality figures.
  • Skilled, critical use of research-oriented AI tools for data analysis and scientific problem-solving, including the ability to independently verify and fact-check AI-generated output against primary literature and source data.

Additional Details
Apply here online:
Upload cover letter and resume. Please be sure to include months and years (MM/YYYY format) to the resume for jobs/work experience.
*OHSU Employees be sure to apply using your OHSU email*
Why apply to OHSU?
We are Oregon's only public academic health center.
In addition to caring for patients, we lead groundbreaking research. We also train the next generation of health care professionals. As Portland's largest employer, we give you opportunities to learn and advance in a system of hospitals and clinics across Oregon and Southwest Washington.
All are welcome.
OHSU welcomes people of all ages, ethnicities, genders, national origins, religions and sexual orientations. We are striving to build an anti-racist, multicultural institution and encourage people with diverse backgrounds to apply.
To request reasonable accommodation, contact askhr@ohsu.edu

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About Oregon Health & Science University

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Oregon Health & Science University (OHSU) is a distinguished institution under the industry of higher education and healthcare, specifically in the field of medical science. Based in Portland, Oregon, US, it maintains a reputation for promoting research, teaching, patient care, and outreach. Established in 1887, OHSU has continually sought to redefine the parameters of healthcare delivery and biomedical discovery through its expansive catalog of programs and initiatives. A galvanizing mission drives OHSU: to improve the health and quality of life for all Oregonians through excellence, innovation, and leadership in health care, education, and research.

Industry

Colleges, universities, and professional schools

Company size

10,000+ Employees

Headquarters location

Portland, OR, US

Year founded

1887