C12Y208/02023

Engineered aryl sulfate-dependent enzymes
11473068 · 2022-10-18 · ·

The present invention provides several non-naturally occurring sulfotransferase enzymes that have been engineered to react with aryl sulfate compounds as sulfo group donors, instead of the natural substrate 3′-phosphoadenosine 5′-phosphosulfate (PAPS), and with heparosan-based polysaccharides, particularly heparan sulfate, as sulfo group acceptors. Each of the engineered sulfotransferase enzymes have a biological activity characterized by the position within the heparosan-based polysaccharide that receives the sulfo group, including glucosaminyl N-sulfotransferase activity, hexuronyl 2-O sulfotransferase activity, glucosaminyl 6-O sulfotransferase activity, or glucosaminyl 3-O sulfotransferase activity. Methods of using the engineered sulfotransferases to produce sulfated heparosan-based polysaccharides, including polysaccharides having anticoagulant activity, are also provided.

ENGINEERED ARYL SULFATE-DEPENDENT ENZYMES
20210363503 · 2021-11-25 ·

The present invention provides several non-naturally occurring sulfotransferase enzymes that have been engineered to react with aryl sulfate compounds as sulfo group donors, instead of the natural substrate 3′-phosphoadenosine 5′-phosphosulfate (PAPS), and with heparosan-based polysaccharides, particularly heparan sulfate, as sulfo group acceptors. Each of the engineered sulfotransferase enzymes have a biological activity characterized by the position within the heparosan-based polysaccharide that receives the sulfo group, including glucosaminyl N-sulfotransferase activity, hexuronyl 2-O sulfotransferase activity, glucosaminyl 6-O sulfotransferase activity, or glucosaminyl 3-O sulfotransferase activity. Methods of using the engineered sulfotransferases to produce sulfated heparosan-based polysaccharides, including polysaccharides having anticoagulant activity, are also provided.

ENGINEERED ARYL SULFATE-DEPENDENT ENZYMES
20210363504 · 2021-11-25 ·

The present invention provides several non-naturally occurring sulfotransferase enzymes that have been engineered to react with aryl sulfate compounds as sulfo group donors, instead of the natural substrate 3′-phosphoadenosine 5′-phosphosulfate (PAPS), and with heparosan-based polysaccharides, particularly heparan sulfate, as sulfo group acceptors. Each of the engineered sulfotransferase enzymes have a biological activity characterized by the position within the heparosan-based polysaccharide that receives the sulfo group, including glucosaminyl N-sulfotransferase activity, hexuronyl 2-O sulfotransferase activity, glucosaminyl 6-O sulfotransferase activity, or glucosaminyl 3-O sulfotransferase activity. Methods of using the engineered sulfotransferases to produce sulfated heparosan-based polysaccharides, including polysaccharides having anticoagulant activity, are also provided.

METHOD OF DIAGNOSIS, PROGNOSIS OR TREATMENT OF NEURODEGENERATIVE DISEASES

Methods for the diagnosis and prognosis of neurodegenerative diseases, such as a Tauopathy or Alzheimer's disease, are described. Compositions and methods for the treatment of neurodegenerative diseases are also described.

IN VITRO HEPARIN AND HEPARAN SULFATE COMPOSITIONS AND METHODS OF MAKING AND USING
20200038430 · 2020-02-06 ·

Disclosed herein are cellular derived heparin and heparan sulfate compositions, methods of making and using, and cell lines for making and using.

ENGINEERED ARYL SULFATE-DEPENDENT ENZYMES
20240093166 · 2024-03-21 ·

The present invention provides several non-naturally occurring sulfotransferase enzymes that have been engineered to react with aryl sulfate compounds as sulfo group donors, instead of the natural substrate 3-phosphoadenosine 5-phosphosulfate (PAPS), and with heparosan-based polysaccharides, particularly heparan sulfate, as sulfo group acceptors. Each of the engineered sulfotransferase enzymes have a biological activity characterized by the position within the heparosan-based polysaccharide that receives the sulfo group, including glucosaminyl N-sulfotransferase activity, hexuronyl 2-O sulfotransferase activity, glucosaminyl 6-O sulfotransferase activity, or glucosaminyl 3-O sulfotransferase activity. Methods of using the engineered sulfotransferases to produce sulfated heparosan-based polysaccharides, including polysaccharides having anticoagulant activity, are also provided.

Method of diagnosis, prognostic or treatment of neurodegenerative disease

Methods for the diagnosis and prognosis of neurodegenerative diseases, such as Alzheimer's disease, are described. Compositions and method for the treatment of neurodegenerative diseases are also described.

METHOD OF DIAGNOSIS, PROGNOSIS OR TREATMENT OF NEURODEGENERATIVE DISEASES

Methods for the diagnosis and prognosis of neurodegenerative diseases, such as a Tauopathy or Alzheimer's disease, are described. Compositions and methods for the treatment of neurodegenerative diseases are also described.

GENETICALLY MODIFIED MOUSE MODELS AND METHODS OF USE THEREOF
20250113809 · 2025-04-10 ·

The present disclosure relates to heparan sulfate transgenic models and methods of use thereof.

IMPROVED HEPARAN SULFATE AND METHODS OF MAKING THE SAME

According to the invention there is provided methods for making heparan sulfate with increased anticoagulant activity wherein the resulting product has a lower heterogeneity and presents an improved safety profile compared to conventional animal-sourced heparin.