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Original Paper | 30-March-2017

Microbial Biomass and Enzymatic Activity of the Surface Microlayer and Subsurface Water in Two Dystrophic Lakes

Iwona Kostrzewska-Szlakowska, Bartosz Kiersztyn

Polish Journal of Microbiology, Volume 66 , ISSUE 1, 75–84

Research Article | 23-May-2019

BIOCHEMICAL METHODS FOR THE EVALUATION OF THE FUNCTIONAL AND STRUCTURAL DIVERSITY OF MICROORGANISMS IN THE SOIL ENVIRONMENT

Karolina Furtak, Anna M. Gajda

Postępy Mikrobiologii - Advancements of Microbiology, Volume 57 , ISSUE 2, 194–202

Original Paper | 04-December-2017

Characterization of Microbial Communities in Acidified, Sulfur Containing Soils

Over a period of three years, microbial communities in acidified soil with high sulfur content were analyzed. In soil water extracts ureolytic, proteolytic, oxidoreductive, and lipolytic activity were detected. The presented results indicate that the enzymatic activity of soil micro­bial communities varied considerably over time. Isolated 26 (80%) bacterial strains belonged to genus Bacillus sp. and were identified bycultivation and 16S rRNA methods. The commercially available procedures

Grzegorz Czerwonka, Iwona Konieczna, Paulina Żarnowiec, Artur Zieliński, Agnieszka Malinowska-Gniewosz, Agnieszka Gałuszka, Zdzisław Migaszewski, Wiesław Kaca

Polish Journal of Microbiology, Volume 66 , ISSUE 4, 509–517

Review | 09-October-2019

The FORS awakens: review of a blood group system reborn

the presence of complement in vitro. First believed to be part of the ABO system, it was later shown that the gene encoding the glycosyltransferase giving rise to FORS1 expression is GBGT1. This gene had previously been deemed nonfunctional in humans, but a mutation, so far only detected in FORS1+ individuals, restores the enzymatic activity. Tissue distribution of the antigen in FORS1+ individuals has not been studied in detail, although the gene is expressed in several cell types. The antigen

Annika K. Hult, Martin L. Olsson

Immunohematology, Volume 33 , ISSUE 2, 64–72

review-article | 26-March-2021

Putative mechanism of neurological damage in COVID-19 infection

(Le Bras, 2020; Sun et al., 2020). In addition to be the receptor for several human coronaviruses, including SARS-CoV-2; ACE2, has enzymatic activity through its two domains: N-terminal and C-terminal. Among its molecular functions are carboxypeptidase activity, dipeptidyl-peptidase activity, endopeptidase activity, exopeptidase activity, metallocarboxypeptidase activity, zinc ion and protein binding. It also possess biological functions such as angiotensin maturation, positive regulation of amino

Cindy Bandala, José Luis Cortes-Altamirano, Samuel Reyes-Long, Eleazar Lara-Padilla, Ian Ilizaliturri-Flores, Alfonso Alfaro-Rodríguez

Acta Neurobiologiae Experimentalis, Volume 81 , ISSUE 1, 69–79

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