7 research outputs found
Vaccinia Virus G8R Protein: A Structural Ortholog of Proliferating Cell Nuclear Antigen (PCNA)
BACKGROUND: Eukaryotic DNA replication involves the synthesis of both a DNA leading and lagging strand, the latter requiring several additional proteins including flap endonuclease (FEN-1) and proliferating cell nuclear antigen (PCNA) in order to remove RNA primers used in the synthesis of Okazaki fragments. Poxviruses are complex viruses (dsDNA genomes) that infect eukaryotes, but surprisingly little is known about the process of DNA replication. Given our previous results that the vaccinia virus (VACV) G5R protein may be structurally similar to a FEN-1-like protein and a recent finding that poxviruses encode a primase function, we undertook a series of in silico analyses to identify whether VACV also encodes a PCNA-like protein. RESULTS: An InterProScan of all VACV proteins using the JIPS software package was used to identify any PCNA-like proteins. The VACV G8R protein was identified as the only vaccinia protein that contained a PCNA-like sliding clamp motif. The VACV G8R protein plays a role in poxvirus late transcription and is known to interact with several other poxvirus proteins including itself. The secondary and tertiary structure of the VACV G8R protein was predicted and compared to the secondary and tertiary structure of both human and yeast PCNA proteins, and a high degree of similarity between all three proteins was noted. CONCLUSIONS: The structure of the VACV G8R protein is predicted to closely resemble the eukaryotic PCNA protein; it possesses several other features including a conserved ubiquitylation and SUMOylation site that suggest that, like its counterpart in T4 bacteriophage (gp45), it may function as a sliding clamp ushering transcription factors to RNA polymerase during late transcription
Neuropsychology in Greece: Results from a survey of practicing professionals
Neuropsychology is a fast-growing specialty in Greece. This study surveyed the status of neuropsychologists in Greece investigating several aspects of the profession. An online-based questionnaire collected data from December 2019 to February 2020. A total of 133 participants specialized in neuropsychology were included in the final sample: 81% of the participants were women with a mean age of 35 years. In the total sample, 25.8% of the participants reported working in the hospital system, 18.5% in the university or college, and 17.7% in a private practice job. Greek professionals cited to engage actively in assessment (87.9%), in research (65.1%), in rehabilitation (47.7%), and teaching (30.2%). Professionals primarily declared to assess individuals with dementia (80.3%), depression (47.7%), and stroke (44.0%), and they reported neurologists, psychiatrists and psychologists as their leading sources of referrals. The top five perceived barriers to the field include the lack of recognized specialty (75.9%), the lack of clinical training opportunities (63.9%), the lack of strong professional associations (57.9%), the lack of access to neuropsychological instruments (57.9%) and the lack of willingness to collaborate between professionals (48.9%). The average monthly income of professionals represents a ratio of 0.76 in comparison to that of other scientists in the country and is the lowest reported among other countries. Despite the significant development of the profession, it is essential to create more clinical training opportunities, apply practices systematically to diverse populations, redefine the specialty of neuropsychology in the national health system of the country, and advocate for the profession. © 2021 Taylor & Francis Group, LLC
Effect of Apolipoprotein E4 on the Driving Behavior of Patients with Amnestic Mild Cognitive Impairment or Mild Alzheimer's Disease Dementia
Background: The driving behavior of patients with mild Alzheimer's disease dementia (ADD) and patients with mild cognitive impairment (MCI) is frequently characterized by errors. A genetic factor affecting cognition is apolipoprotein E4 (APOE4), with carriers of APOE4 showing greater episodic memory impairment than non-carriers. However, differences in the driving performance of the two groups have not been investigated. Objective: To compare driving performance in APOE4 carriers and matched non-carriers. Methods: Fourteen APOE4 carriers and 14 non-carriers with amnestic MCI or mild ADD underwent detailed medical and neuropsychological assessment and participated in a driving simulation experiment, involving driving in moderate and high traffic volume in a rural environment. Driving measures were speed, lateral position, headway distance and their SDs, and reaction time. APOE was genotyped through plasma samples. Results: Mixed two-way ANOVAs examining traffic volume and APOE4 status showed a significant effect of traffic volume on all driving variables, but a significant effect of APOE4 on speed variability only. APOE4 carriers were less variable in their speed than non-carriers; this remained significant after a Bonferroni correction. To further examine variability in the driving performance, coefficients of variation (COV) were computed. Larger headway distance COV and smaller lateral position COV were observed in high compared to moderate traffic. APOE4 carriers had smaller speed COV compared to non-carriers. Conclusion: The lower speed variability of APOE4 carriers in the absence of neuropsychological test differences indicates reduced speed adaptations, possibly as a compensatory strategy. Simulated driving may be a sensitive method for detecting performance differences in the absence of cognitive differences. © 2021 - IOS Press. All rights reserved
The vaccinia virus DNA polymerase structure provides insights into the mode of processivity factor binding
The catalytic subunit E9 of the vaccinia virus DNA polymerase forms a functional polymerase holoenzyme by interacting with the heterodimeric processivity factor A20/D4. Here the authors present the structure of full-length E9 and show that an insertion within its palm domain binds A20, in a mode different from other family B polymerases