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CLCC1 Antibodies

Santa Cruz Biotechnology, Inc. offers a broad range of CLCC1 antibodies. Select CLCC1 antibodies from several monoclonal and/or polyclonal CLCC1 antibodies listed below. View detailed CLCC1 antibody specifications by linking to the specific product blocks. Select appropriate CLCC1 antibodies for your research by isotype, epitope, applications and species reactivity. CLCC1 gene silencer products in siRNA, shRNA Plasmid and shRNA Lentiviral Particle formats are also available.

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PRODUCT NAMECAT. #ISOTYPEEPITOPEAPPLICATIONSSPECIESCITATIONSRATING
CLCC1 (C-16)sc-131895goat IgGC-terminal (h)WB, IF, ELISAhuman
CLCC1 (E-14)sc-131897goat IgGInternal (h)WB, IF, ELISAm, r, h
CLCC1 (H-199)sc-366003rabbit IgG86-284 (h)WB, IP, IF, ELISAhuman
CLCC1 (N-12)sc-131898goat IgGInternal (h)WB, IF, ELISAm, r, h, p
CLCC1 (P-20)sc-101919rabbit IgGN/AWB, IP, IF, IHC(P), ELISA m, r, h, canine

CLCC1 siRNA, shRNA Plasmid and shRNA Lentiviral Particles gene silencers include:

siRNAsshRNA PlasmidsshRNA Lentiviral ParticlesCITATIONSRANKING
CLCC1 siRNA (h): sc-78968CLCC1 shRNA Plasmid (h):
sc-78968-SH
CLCC1 shRNA (h)
Lentiviral Particles: sc-78968-V
CLCC1 siRNA (m): sc-142373CLCC1 shRNA Plasmid (m):
sc-142373-SH
CLCC1 shRNA (m)
Lentiviral Particles: sc-142373-V

Chloride channels (CLCs) regulate cellular traffic of chloride ions, a critical component of all living cells. CLCs are involved in membrane potential stabilization, signal transduction, cell volume regulation and organic solute transport. CLCC1 (Chloride channel CLIC-like protein 1), also known as MCLC (Mid-1-related chloride channel) or KIAA0761, is a 551 amino acid multi-pass membrane protein that belongs to the chloride channel MCLC family. CLCC1 is related to the Saccharomyces cerevisiae protein Mid-1 and is believed to function as an intracellular chloride channel that is expressed in lung, brain, muscle, liver and testis. Localizing to intracellular compartments such as the Golgi apparatus, the endoplasmic reticulum (ER) and the nuclear envelope, CLCC1 is expressed as four isoforms due to alternative splicing events, namely hMCLC-1, hMCLC-2, hMCLC-3 and hMCLC-4.