PIPA522087

RBMY1A1 Polyclonal Antibody, Invitrogen™

Manufacturer: Thermo Scientific

Select a Size

Pack Size SKU Availability Price
Each of 1 PIPA522087-Each-of-1 In Stock ₹ 46,502.50

PIPA522087 - Each of 1

₹ 46,502.50

In Stock

Quantity

1

Base Price: ₹ 46,502.50

GST (18%): ₹ 8,370.45

Total Price: ₹ 54,872.95

Antigen

RBMY1A1

Classification

Polyclonal

Conjugate

Unconjugated

Gene

RBMY1A1

Gene Alias

hRBMY; RBM; RBM1; RBM2; RBMY; RBMY1A1; RBMY1C; RNA binding motif protein, Y-linked, family 1, member A1; RNA-binding motif protein 1; RNA-binding motif protein 2; RNA-binding motif protein, Y chromosome, family 1 member A1; RNA-binding motif protein, Y chromosome, family 1 member A1/C; Y chromosome RNA recognition motif 1; Y chromosome RNA recognition motif 2; YRRM1; YRRM2

Host Species

Rabbit

Purification Method

Antigen affinity chromatography

Regulatory Status

RUO

Gene ID (Entrez)

5940

Content And Storage

Store at 4°C short term. For long term storage, store at -20°C, avoiding freeze/thaw cycles.

Form

Liquid

Applications

Immunohistochemistry (Paraffin), Western Blot

Concentration

1 mg/mL

Formulation

0.1M tris glycine with 10% glycerol and 0.01% thimerosal; pH 7

Gene Accession No.

P0DJD3

Gene Symbols

RBMY1A1

Immunogen

Recombinant fragment corresponding to a region within amino acids 253 and 496 of RBMY1A1 (Uniprot ID#Q15414)

Quantity

100 μL

Primary or Secondary

Primary

Target Species

Human

Product Type

Antibody

Isotype

IgG

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Description

  • Recommended positive controls: NT2D1, PC-3
  • Store product as a concentrated solution
  • Centrifuge briefly prior to opening the vial
  • RBMY1A1 is a protein containing an RNA-binding motif in the N-terminus and four SRGY (serine, arginine, glycine, tyrosine) boxes in the C-terminus
  • This protein is thought to function as a splicing regulator during spermatogenesis
  • Multiple closely related paralogs of this gene are found in a gene cluster in the AZFb azoospermia factor region of chromosome Y
  • Most of these related copies are thought to be pseudogenes, though several likely encode functional proteins.