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David Popp

Explore the profile of David Popp including associated specialties, affiliations and a list of published articles. Areas
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Articles 33
Citations 513
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Recent Articles
1.
Chen Z, Marin G, Popp D, Vona F
Environ Resour Econ (Dordr) . 2020 Aug; 76(4):901-911. PMID: 32836847
As nations struggle to restart their economy after COVID-19 lockdowns, calls to include green investments in a pandemic-related stimulus are growing. Yet little research provides evidence of the effectiveness of...
2.
Branden G, Hammarin G, Harimoorthy R, Johansson A, Arnlund D, Malmerberg E, et al.
Nat Commun . 2019 Sep; 10(1):4101. PMID: 31488847
An amendment to this paper has been published and can be accessed via a link at the top of the paper.
3.
Koh F, Narita A, Lee L, Tanaka K, Tan Y, Dandey V, et al.
Nat Commun . 2019 Jun; 10(1):2856. PMID: 31253774
Microfilaments (actin) and microtubules represent the extremes in eukaryotic cytoskeleton cross-sectional dimensions, raising the question of whether filament architectures are limited by protein fold. Here, we report the cryoelectron microscopy...
4.
Branden G, Hammarin G, Harimoorthy R, Johansson A, Arnlund D, Malmerberg E, et al.
Nat Commun . 2019 Jun; 10(1):2589. PMID: 31197138
X-ray free electron lasers (XFELs) create new possibilities for structural studies of biological objects that extend beyond what is possible with synchrotron radiation. Serial femtosecond crystallography has allowed high-resolution structures...
5.
Popp D, Koh F, Scipion C, Ghoshdastider U, Narita A, Holmes K, et al.
Bioessays . 2018 Feb; 40(4):e1700213. PMID: 29484695
Structural biology has experienced several transformative technological advances in recent years. These include: development of extremely bright X-ray sources (microfocus synchrotron beamlines and free electron lasers) and the use of...
6.
Popp D, Loh N, Zorgati H, Ghoshdastider U, Liow L, Ivanova M, et al.
Cytoskeleton (Hoboken) . 2017 Jun; 74(12):472-481. PMID: 28574190
A major goal for X-ray free-electron laser (XFEL) based science is to elucidate structures of biological molecules without the need for crystals. Filament systems may provide some of the first...
7.
Jiang S, Ghoshdastider U, Narita A, Popp D, Robinson R
Commun Integr Biol . 2017 Jan; 9(6):e1242538. PMID: 28042378
From yeast to man, an evolutionary distance of 1.3 billion years, the F-actin filament structure has been conserved largely in line with the 94% sequence identity. The situation is entirely...
8.
Barko S, Szatmari D, Bodis E, Turmer K, Ujfalusi Z, Popp D, et al.
Biochim Biophys Acta . 2016 Jun; 1860(9):1942-52. PMID: 27297907
Background: Weil's syndrome is caused by Leptospira interrogans infections, a Gram negative bacterium with a distinct thin corkscrew cell shape. The molecular basis for this unusual morphology is unknown. In...
9.
Jiang S, Narita A, Popp D, Ghoshdastider U, Lee L, Srinivasan R, et al.
Proc Natl Acad Sci U S A . 2016 Feb; 113(9):E1200-5. PMID: 26873105
Here we report the discovery of a bacterial DNA-segregating actin-like protein (BtParM) from Bacillus thuringiensis, which forms novel antiparallel, two-stranded, supercoiled, nonpolar helical filaments, as determined by electron microscopy. The...
10.
Ghoshdastider U, Jiang S, Popp D, Robinson R
Proc Natl Acad Sci U S A . 2015 Jul; 112(30):9150-1. PMID: 26178194
No abstract available.