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HealthTech Connex Inc protparam tool
Protparam Tool, supplied by HealthTech Connex Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/protparam+tool/protparam/pm40499699-66-17-32
Average 90 stars, based on 1 article reviews
protparam tool - by Bioz Stars, 2026-10
90/100 stars

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Glycoproteomics:

Article Title: The Effect of EGR1 on the Proliferation of Dermal Papilla Cells
Article Snippet: .. The following were conducted: analysis of basic protein chemistry using the ProtParam tool ( https://web.expasy.org/protparam/ , accessed on 3 April 2022); potential signal peptide cleavage site prediction using SignalP4.1 ( https://services.healthtech.dtu.dk/service.php?SignalP-4.1 , accessed on 3 April 2022); analysis of glycosylation sites using NetOGlyc4.0 ( https://services.healthtech.dtu.dk/service.php?NetOGlyc-4.0 , accessed on 3 April 2022); prediction of phosphorylation sites of amino acid sequences using NetPhos3.1 ( https://services.healthtech.dtu.dk/service.php?NetPhos-3.1 , accessed on 3 April 2022); prediction of conserved structural domains of amino acid sequences using SMART ( http://smart.embl-heidelberg.de/ , accessed on 3 April 2022); prediction of secondary structure using ProtScale ( https://web.expasy.org/protscale/ , accessed on 3 April 2022) to analyze the hydrophilicity of amino acid sequences; GOR IV ( https://npsa-prabi.ibcp.fr/cgi-bin/npsa_automat.pl?page=npsa_gor4.html , accessed on 3 April 2022) to predict the secondary structure of proteins; transmembrane analysis of protein sequences using TMHMM-2.0 ( https://services.healthtech.dtu.dk/service.php?TMHMM-2.0 , accessed on 3 April 2022); and analysis of protein subcellular localization using PSORT II ( https://psort.hgc.jp/form2.html , accessed on 3 April 2022). ..

Article Title: BMP7 Functions to Regulate Proliferation of Dermal Papilla Cells in Hu Sheep
Article Snippet: .. Basic chemical properties of proteins were analyzed using the ProtParam tool (ProtParam, http://web.expasy.org/protparam/ , accessed on 22 December 2021); protein subcellular localization was analyzed using TargetP (TargetP-2.0, https://services.healthtech.dtu.dk/service.php?TargetP-2.0 , accessed on 22 December 2021) and PSORT II Prediction (PSORT Prediction, http://psort.hgc.jp/form.html , accessed on 22 December 2021); potential signal peptide cleavage sites prediction were performed using SignalP4.1 (SignalP4.1, https://services.healthtech.dtu.dk/service.php?SignalP-4.1 , accessed on 22 December 2021); glycosylation sites were analyzed using NetOGlyc4.0 (NetOGlyc4.0, https://services.healthtech.dtu.dk/service.php?NetOGlyc-4.0 , accessed on 22 December 2021); the phosphorylation sites of amino acids were predicted using NetPhos3.1 (NetPhos-3.1, https://services.healthtech.dtu.dk/service.php?NetPhos-3.1 , accessed on 22 December 2021); conserved domains of the amino acid sequence were predicted using Smart (SMART, http://smart.embl-heidelberg.de/ , accessed on 22 December 2021); the hydrophilicity of amino acid sequences was analyzed using ProtScale (ProtScale, http://web.expasy.org/protscale/ , accessed on 22 December 2021); protein secondary structure was predicted using GOR IV (GOR IV SECONDARY STRUCTURE PREDICTION METHOD, http://npsa-pbil.ibcp.fr/cgi-bin/npsa_automat.pl?page=npsa_gor4.html , accessed on 22 December 2021); transmembrane analysis of protein sequences was performed using TMHMM-2.0 (TMHMM-2.0, https://services.healthtech.dtu.dk/service.php?TMHMM-2.0 , accessed on 22 December 2021). ..

Phospho-proteomics:

Article Title: The Effect of EGR1 on the Proliferation of Dermal Papilla Cells
Article Snippet: .. The following were conducted: analysis of basic protein chemistry using the ProtParam tool ( https://web.expasy.org/protparam/ , accessed on 3 April 2022); potential signal peptide cleavage site prediction using SignalP4.1 ( https://services.healthtech.dtu.dk/service.php?SignalP-4.1 , accessed on 3 April 2022); analysis of glycosylation sites using NetOGlyc4.0 ( https://services.healthtech.dtu.dk/service.php?NetOGlyc-4.0 , accessed on 3 April 2022); prediction of phosphorylation sites of amino acid sequences using NetPhos3.1 ( https://services.healthtech.dtu.dk/service.php?NetPhos-3.1 , accessed on 3 April 2022); prediction of conserved structural domains of amino acid sequences using SMART ( http://smart.embl-heidelberg.de/ , accessed on 3 April 2022); prediction of secondary structure using ProtScale ( https://web.expasy.org/protscale/ , accessed on 3 April 2022) to analyze the hydrophilicity of amino acid sequences; GOR IV ( https://npsa-prabi.ibcp.fr/cgi-bin/npsa_automat.pl?page=npsa_gor4.html , accessed on 3 April 2022) to predict the secondary structure of proteins; transmembrane analysis of protein sequences using TMHMM-2.0 ( https://services.healthtech.dtu.dk/service.php?TMHMM-2.0 , accessed on 3 April 2022); and analysis of protein subcellular localization using PSORT II ( https://psort.hgc.jp/form2.html , accessed on 3 April 2022). ..

Article Title: BMP7 Functions to Regulate Proliferation of Dermal Papilla Cells in Hu Sheep
Article Snippet: .. Basic chemical properties of proteins were analyzed using the ProtParam tool (ProtParam, http://web.expasy.org/protparam/ , accessed on 22 December 2021); protein subcellular localization was analyzed using TargetP (TargetP-2.0, https://services.healthtech.dtu.dk/service.php?TargetP-2.0 , accessed on 22 December 2021) and PSORT II Prediction (PSORT Prediction, http://psort.hgc.jp/form.html , accessed on 22 December 2021); potential signal peptide cleavage sites prediction were performed using SignalP4.1 (SignalP4.1, https://services.healthtech.dtu.dk/service.php?SignalP-4.1 , accessed on 22 December 2021); glycosylation sites were analyzed using NetOGlyc4.0 (NetOGlyc4.0, https://services.healthtech.dtu.dk/service.php?NetOGlyc-4.0 , accessed on 22 December 2021); the phosphorylation sites of amino acids were predicted using NetPhos3.1 (NetPhos-3.1, https://services.healthtech.dtu.dk/service.php?NetPhos-3.1 , accessed on 22 December 2021); conserved domains of the amino acid sequence were predicted using Smart (SMART, http://smart.embl-heidelberg.de/ , accessed on 22 December 2021); the hydrophilicity of amino acid sequences was analyzed using ProtScale (ProtScale, http://web.expasy.org/protscale/ , accessed on 22 December 2021); protein secondary structure was predicted using GOR IV (GOR IV SECONDARY STRUCTURE PREDICTION METHOD, http://npsa-pbil.ibcp.fr/cgi-bin/npsa_automat.pl?page=npsa_gor4.html , accessed on 22 December 2021); transmembrane analysis of protein sequences was performed using TMHMM-2.0 (TMHMM-2.0, https://services.healthtech.dtu.dk/service.php?TMHMM-2.0 , accessed on 22 December 2021). ..

Sequencing:

Article Title: BMP7 Functions to Regulate Proliferation of Dermal Papilla Cells in Hu Sheep
Article Snippet: .. Basic chemical properties of proteins were analyzed using the ProtParam tool (ProtParam, http://web.expasy.org/protparam/ , accessed on 22 December 2021); protein subcellular localization was analyzed using TargetP (TargetP-2.0, https://services.healthtech.dtu.dk/service.php?TargetP-2.0 , accessed on 22 December 2021) and PSORT II Prediction (PSORT Prediction, http://psort.hgc.jp/form.html , accessed on 22 December 2021); potential signal peptide cleavage sites prediction were performed using SignalP4.1 (SignalP4.1, https://services.healthtech.dtu.dk/service.php?SignalP-4.1 , accessed on 22 December 2021); glycosylation sites were analyzed using NetOGlyc4.0 (NetOGlyc4.0, https://services.healthtech.dtu.dk/service.php?NetOGlyc-4.0 , accessed on 22 December 2021); the phosphorylation sites of amino acids were predicted using NetPhos3.1 (NetPhos-3.1, https://services.healthtech.dtu.dk/service.php?NetPhos-3.1 , accessed on 22 December 2021); conserved domains of the amino acid sequence were predicted using Smart (SMART, http://smart.embl-heidelberg.de/ , accessed on 22 December 2021); the hydrophilicity of amino acid sequences was analyzed using ProtScale (ProtScale, http://web.expasy.org/protscale/ , accessed on 22 December 2021); protein secondary structure was predicted using GOR IV (GOR IV SECONDARY STRUCTURE PREDICTION METHOD, http://npsa-pbil.ibcp.fr/cgi-bin/npsa_automat.pl?page=npsa_gor4.html , accessed on 22 December 2021); transmembrane analysis of protein sequences was performed using TMHMM-2.0 (TMHMM-2.0, https://services.healthtech.dtu.dk/service.php?TMHMM-2.0 , accessed on 22 December 2021). ..

Expressing:

Article Title: Expression and functional characterization of odorant-binding protein 2 in the predatory mite Neoseiulus barkeri.
Article Snippet: Olfaction plays a crucial role for arthropods in foraging, mating, and oviposition.. The odorant-binding protein (OBP) gene is considered one of the most important olfactory genes.. However, little is known about its functions in predatory mites.

Purification:

Article Title: Expression and functional characterization of odorant-binding protein 2 in the predatory mite Neoseiulus barkeri.
Article Snippet: Olfaction plays a crucial role for arthropods in foraging, mating, and oviposition.. The odorant-binding protein (OBP) gene is considered one of the most important olfactory genes.. However, little is known about its functions in predatory mites.

Recombinant:

Article Title: Expression and functional characterization of odorant-binding protein 2 in the predatory mite Neoseiulus barkeri.
Article Snippet: Olfaction plays a crucial role for arthropods in foraging, mating, and oviposition.. The odorant-binding protein (OBP) gene is considered one of the most important olfactory genes.. However, little is known about its functions in predatory mites.

Molecular Weight:

Article Title: Expression and functional characterization of odorant-binding protein 2 in the predatory mite Neoseiulus barkeri.
Article Snippet: Olfaction plays a crucial role for arthropods in foraging, mating, and oviposition.. The odorant-binding protein (OBP) gene is considered one of the most important olfactory genes.. However, little is known about its functions in predatory mites.



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