bioRxiv Science⌕ Search

Biology subjects

Karjalainen, E.

Publications and source records attributed to Karjalainen, E..

2 recordsLinked to original sources

Collagen prolyl 4-hydroxylases have sequence specificity towards different X-Pro-Gly triplets

Formation of 4-hydroxyproline (4Hyp) in -X-Pro-Gly- collagen sequences is essential for the thermal stability of collagen molecules. 4Hyp formation is catalyzed by collagen prolyl 4-hydroxylases (C- P4H). Here we identify specific roles for the two main C-P4H isoenzymes by 4Hyp analysis of type I and IV collagens. Loss of C-P4H-I mainly affected prolines preceded by an X-position amino acid with a positively charged or a polar uncharged side chain. In contrast, loss of C-P4H-II affected triplets with a negatively charged glutamate or aspartate in the X-position, and their hydroxylation was found to be important as loss of C-P4H-II alone resulted in reduced collagen melting temperature and altered assembly of collagen fibrils and basement membrane. The C-P4H isoenzyme differences in substrate specificity were explained by selective substrate binding to the active site resulting in differences in Km and Vmax values. In conclusion, this study provides a molecular level explanation for the need of multiple C-P4H isoenzymes to generate collagen molecules capable to assemble into intact extracellular matrix structures.

molecular biology↗

COMPARE, an ultra-fast and robust suite for multiparametric screening, identifies phenotypic drug responses in acute myeloid leukemia

Multiparametric phenotypic screening of cells, for example assessing their responses to small molecules or knockdown/knockout of specific genes, is a powerful approach to understanding cellular systems and identifying potential new therapeutic strategies. However, automated tools for analyzing similarities and differences between a large number of tested conditions have not been readily available. Methods designed for clustering cells cannot identify differences between samples effectively. We introduce O_SCPLOWCOMPAC_SCPLOWRO_SCPLOWEC_SCPLOW for ultra-fast and robust analysis of multiparametric high-throughput screening. Applying a mass-aware gridding algorithm using hypercubes, O_SCPLOWCOMPAC_SCPLOWRO_SCPLOWEC_SCPLOW performs automatic and effective similarity comparison for hundreds to thousands of tests and provides information about the treatment effect. Particularly for screening data, O_SCPLOWCOMPAC_SCPLOWRO_SCPLOWEC_SCPLOW is equipped with modules to remove various sources of bias. Benchmarking tests show that O_SCPLOWCOMPAC_SCPLOWRO_SCPLOWEC_SCPLOW can circumvent batch effects and perform a similarity analysis substantially faster than conventional analysis tools. Applying O_SCPLOWCOMPAC_SCPLOWRO_SCPLOWEC_SCPLOW to high-throughput flow cytometry screening data, we were able to distinguish subtle phenotypic drug responses in a human sample and a genetically engineered mouse model with acute myeloid leukemia (AML). O_SCPLOWCOMPAC_SCPLOWRO_SCPLOWEC_SCPLOW revealed groups of drugs with similar responses even though their mechanisms are distinct from each other. In another screening, O_SCPLOWCOMPAC_SCPLOWRO_SCPLOWEC_SCPLOW effectively circumvented batch effects and grouped samples from AML and myelodysplastic syndrome (MDS) patients using clinical flow cytometry data.

cancer biology↗