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I am a postdoc at #MIT working in Barbara Imperiali's group. I'm interested in developing tools and techniques to study bacterial membrane proteins involved in glycoconjugate biosynthesis.

BS RIT | PhD UMich - Janet Smith Lab | Postdoc MIT - Imperiali & Kiessling Labs |Ruth L. Kirschstein Fellow

Work: #StructuralBiology, #Glycobiology, #Crystallography, #MembraneProteins, #Glycotime, #Science, #Biochemistry, #Nanobodies

Home: #Hardware, #Cooking, #Beers, #Dogs, #Gaming

Twitter@GregDodge9
ORCIDhttps://orcid.org/0000-0002-6555-8350
Google Scholarhttps://scholar.google.com/citations?user=pt31R90AAAAJ&hl=en

One more because she's adorable

#dog #cute

This little pup turns 1 tomorrow!

#dogsofmstdn #dog

Puppy content?

Puppy content.

We rescued a 6 months old pit mix named kiwi this week! Feels great to have a dog back in the house, but the puppy energy is very real with this one
My kids are watching this classic scene from Sesame Street and are just as confused as the Yip Yips. They have absolutely no conception of what this thing is. The humor of the scene has truly come full circle.

We have new paper in @BiophysicistJ about our
@strucbio TEACHING!

We have developed a semester-long learning path that integrate structure analysis using PyMOL in relevant biochemical context and support development of the students’ computational skills.

All science students benefit from some level of coding – We reasoned that structure analysis in PyMOL is a great lever for introducing python skills early as a few lines of code generate useful and stunning results.

https://doi.org/10.35459/tbp.2022.000219

Semester-Long Learning Path Teaching Computational Skills via Molecular Graphics in PyMOL

ABSTRACT. Structural biology describes biological processes at the molecular level and is an integral part of undergraduate study programs in molecular biosciences. Students are often fascinated by the visualizations created by molecular graphics software, which allow them to see the molecular world for the first time. Today, molecular visualization and structural analysis do not require expensive high-end computers but can be performed on the students' own laptops and are therefore highly suited for active learning approaches. We have designed a semester-long learning path that integrates molecular graphics and structural analysis using PyMOL into an undergraduate course in biomolecular structure and function. Compared to stand-alone PyMOL introductions, the semester-long learning path allows for an improved pedagogical design. The path progressively introduces more advanced functions in relevant scientific contexts and allows for spaced repetition. Advanced analysis functions in PyMOL are available only via the command line, so the learning path also teaches basic scripting and serves as an accessible introduction to computational thinking because a few lines of code can produce stunning results. Student surveys carried out at the end of the course suggest that the learning path supported the ability to perform structural analysis to a high degree. Moreover, a simulated exam showed that almost all students were able to carry out basic visualization tasks using PyMOL scripts, while three-quarters could undertake advanced structural analysis after following the course. In summary, integration of molecular graphics software with teaching of structural biochemistry allows a hands-on approach to analyzing molecular mechanisms and introduces biologically oriented students to computational thinking.

Allen Press

@doot

The clackening

Project for the day: fixing a Switch Pro controller with major drift issues! Super easy, and parts were way less than $70 for a new unit.
#DIY #NintendoSwitch #Repair