Mining the Plasma Cell Transcriptome for Novel Cell Surface Proteins.
Stephanie TreziseAlexander KarnowskiPasquale L FedeleSridurga MithraprabhuYang LiaoKathy D'CostaAndrew J KuehMatthew P HardyCatherine M OwczarekMarco J HeroldAndrew SpencerWei ShiSimon N WillisStephen L NuttLynn M CorcoranPublished in: International journal of molecular sciences (2018)
Antibody Secreting Cells (ASCs) are a fundamental component of humoral immunity, however, deregulated or excessive antibody production contributes to the pathology of autoimmune diseases, while transformation of ASCs results in the malignancy Multiple Myeloma (MM). Despite substantial recent improvements in treating these conditions, there is as yet no widely used ASC-specific therapeutic approach, highlighting a critical need to identify novel methods of targeting normal and malignant ASCs. Surface molecules specifically expressed by the target cell population represent ideal candidates for a monoclonal antibody-based therapy. By interrogating the ASC gene signature that we previously defined we identified three surface proteins, Plpp5, Clptm1l and Itm2c, which represent potential targets for novel MM treatments. Plpp5, Clptm1l and Itm2c are highly and selectively expressed by mouse and human ASCs as well as MM cells. To investigate the function of these proteins within the humoral immune system we have generated three novel mouse strains, each carrying a loss-of-function mutation in either Plpp5, Clptm1l or Itm2c. Through analysis of these novel strains, we have shown that Plpp5, Clptm1l and Itm2c are dispensable for the development, maturation and differentiation of B-lymphocytes, and for the production of antibodies by ASCs. As adult mice lacking either protein showed no apparent disease phenotypes, it is likely that targeting these molecules on ASCs will have minimal on-target adverse effects.
Keyphrases
- induced apoptosis
- single cell
- monoclonal antibody
- immune response
- cell surface
- cell cycle arrest
- cell therapy
- escherichia coli
- multiple myeloma
- endothelial cells
- genome wide
- cancer therapy
- endoplasmic reticulum stress
- rna seq
- gene expression
- stem cells
- dna methylation
- risk assessment
- computed tomography
- drug delivery
- weight loss
- pi k akt
- amino acid
- physical activity
- type diabetes
- climate change
- mesenchymal stem cells
- body mass index
- human health
- replacement therapy
- smoking cessation
- small molecule