siRNA / miRNA gene silencing Rat MTLn3 (rat mammary adenocarcinoma breast cancer cell line)

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Get tips on using Pierce™ Magnetic ChIP Kit to perform ChIP Human - Fibroblast cell lines

Products Thermo Fisher Scientific Pierce™ Magnetic ChIP Kit
mTeSR™1 Product

Get tips on using mTeSR™1 to perform Stem cell culture media hESC lines H9, H1

Products STEMCELL technologies mTeSR™1

Get tips on using TaqMan® MicroRNA Reverse Transcription Kit to perform cDNA synthesis Cell lines

Products Thermo Fisher Scientific TaqMan® MicroRNA Reverse Transcription Kit

Get tips on using High-capacity cDNA reverse transcription kit to perform cDNA synthesis Cell lines

Products Applied Biosystems High-capacity cDNA reverse transcription kit

Get tips on using Atg5 (D5F5U) Rabbit mAb to perform Autophagy assay cell type - K562 cells

Products Cell Signaling Technology Atg5 (D5F5U) Rabbit mAb

Get tips on using Atg12 (D88H11) Rabbit mAb to perform Autophagy assay cell type - RPE-J cells

Products Cell Signaling Technology Atg12 (D88H11) Rabbit mAb

Generally it has been difficult to isolate high-quality RNA from yeast because of problems disrupting the cells. Use of enzymes to disrupt cell wall can alter gene expression profiles. Therefore, physical disruption can result in high quality RNA for all downstream processing. Use of DNAse and proteinase K will remove traces of DNA contamination and proteins respectively.

RNA RNA isolation / purification Yeast Saccharomyces cerevisiae

Generally it has been difficult to isolate high-quality RNA from yeast because of problems disrupting the cells. Use of enzymes to disrupt cell wall can alter gene expression profiles. Therefore, physical disruption can result in high quality RNA for all downstream processing. Use of DNAse and proteinase K will remove traces of DNA contamination and proteins respectively.

RNA RNA isolation / purification Yeast Ashbya gossypii

Generally it has been difficult to isolate high-quality RNA from yeast because of problems disrupting the cells. Use of enzymes to disrupt cell wall can alter gene expression profiles. Therefore, physical disruption can result in high quality RNA for all downstream processing. Use of DNAse and proteinase K will remove traces of DNA contamination and proteins respectively.

RNA RNA isolation / purification Yeast Aspergillus nidulans

Generally it has been difficult to isolate high-quality RNA from yeast because of problems disrupting the cells. Use of enzymes to disrupt cell wall can alter gene expression profiles. Therefore, physical disruption can result in high quality RNA for all downstream processing. Use of DNAse and proteinase K will remove traces of DNA contamination and proteins respectively.

RNA RNA isolation / purification Yeast Candida albicans

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