JoVE Logo

Oturum Aç

KonseptDeney

Bu içeriği görüntülemek için JoVE aboneliği gereklidir.

Imaging GLUT4 Protein Trafficking in Mouse Primary Hypothalamic Neurons Using Deconvolution Microscopy

-- views • 1:30 min

TRANSKRIPT

Begin with wild-type and CCR5-knockout mouse primary hypothalamic neurons cultured on poly-D-lysine-coated coverslips in a multi-well plate. 

These neurons express green fluorescent protein-tagged glucose transporter-4 (GFP-GLUT4) in the cytoplasm.

Transfer the coverslips onto glass slides and gently wipe off excess medium to ensure stability during image acquisition.

Place a slide on the deconvolution microscope stage with the coverslip facing downward.

Visualize the neurons under bright-field illumination, then treat them with the chemokine CCL5 and insulin sequentially.

Switch to fluorescence illumination to identify GFP-GLUT4-expressing target neurons and adjust the imaging parameters to capture live fluorescent images.

In wild-type neurons, insulin and CCL5 bind to the insulin receptor and CCR5, respectively, activating downstream signaling pathways that drive GFP-GLUT4 membrane translocation.

In CCR5-knockout neurons, CCL5 fails to bind, resulting in reduced GFP-GLUT4 translocation.

Capture the images and apply a deconvolution algorithm to reduce out-of-focus light, enhancing image clarity and resolution.

article

02:07

Imaging GLUT4 Protein Trafficking in Mouse Primary Hypothalamic Neurons Using Deconvolution Microscopy

İlgili Videolar

32 Views

article

08:32

Hipotalamik insülin sinyal fare beyin içine sürekli uyuşturucu infüzyon sistemi ile periferik glikoz intoleransı için eğitim

İlgili Videolar

10.2K Views

article

07:07

TDP-43 Proteinopatisinin Drosophila Modellerinde Glikoz Alımının Ölçülmesi

İlgili Videolar

2.7K Views

JoVE Logo

Gizlilik

Kullanım Şartları

İlkeler

Araştırma

Eğitim

JoVE Hakkında

Telif Hakkı © 2020 MyJove Corporation. Tüm hakları saklıdır